Source files
Mapping profiles
TORINO grounded verification · testcase
VMMP conservative · requirement
Import history
VME-PROD-VehicleMotionManagement - VMMP_LOC_LOCADF.xlsx · source records
| Row | ID | Type | Status | Relevant | Candidate | Reason | Normalized text |
|---|---|---|---|---|---|---|---|
| 2 | 16652979 | Folder | no | False | type_not_target, status_filtered, relevance_filtered | Short descriptionShort description Raw{
"ID": "16652979",
"ASIL": " ",
"Text": "Short description",
"Type": "Folder",
"Status": "",
"Summary": "Short description",
"Relevant": "no",
"column_12": "",
"Foreign ID": "1077004",
"Description": "",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} | |
| 3 | 16652980 | Information | no | False | type_not_target, status_filtered, relevance_filtered | The module LOCADF (LOngitudinal Control Acceleration Demand Forming) is part of the sub-function LOC. The module is responsible tThe module LOCADF (LOngitudinal Control Acceleration Demand Forming) is part of the sub-function LOC. The module is responsible to form the arbitrated demand and dynamic tolerance with the given gradients to prevent non permitted request steps. It also considers the correct set points depending on the overall acceleration control state and requested dynamics. Additionally it limits the output demands according to a deceleration only request by taking the current vehicle state into account. Raw{
"ID": "16652980",
"ASIL": " ",
"Text": "The module LOCADF (LOngitudinal Control Acceleration Demand Forming) is part of the sub-function LOC.\n_x000D_The module is responsible to form the arbitrated demand and dynamic tolerance with the given gradients to prevent non permitted request steps. It also considers the correct set points depending on the overall acceleration control state and requested dynamics.\n_x000D_Additionally it limits the output demands according to a deceleration only request by taking the current vehicle state into account.",
"Type": "Information",
"Status": "",
"Summary": "",
"Relevant": "no",
"column_12": "",
"Foreign ID": "1077009",
"Description": "The module LOCADF (LOngitudinal Control Acceleration Demand Forming) is part of the sub-function LOC.\n_x000D_The module is responsible to form the arbitrated demand and dynamic tolerance with the given gradients to prevent non permitted request steps. It also considers the correct set points depending on the overall acceleration control state and requested dynamics.\n_x000D_Additionally it limits the output demands according to a deceleration only request by taking the current vehicle state into account.",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} | |
| 4 | 16652981 | Folder | no | False | type_not_target, status_filtered, relevance_filtered | Interface descriptionInterface description Raw{
"ID": "16652981",
"ASIL": " ",
"Text": "Interface description",
"Type": "Folder",
"Status": "",
"Summary": "Interface description",
"Relevant": "no",
"column_12": "",
"Foreign ID": "1181433",
"Description": "",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} | |
| 5 | 16652982 | Information | no | False | type_not_target, status_filtered, relevance_filtered | The signals and parameter files for the relevante SWRS are:The signals and parameter files for the relevante SWRS are: Raw{
"ID": "16652982",
"ASIL": " ",
"Text": "The signals and parameter files for the relevante SWRS are:",
"Type": "Information",
"Status": "",
"Summary": "",
"Relevant": "no",
"column_12": "",
"Foreign ID": "1380415",
"Description": "The signals and parameter files for the relevante SWRS are:",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} | |
| 6 | 16652983 | Information | no | False | type_not_target, status_filtered, relevance_filtered | Member/SWC_VMMP/01_PROD/30_CG/DevTools/Spec/VMMP/VMMP.parameterMember/SWC_VMMP/01_PROD/30_CG/DevTools/Spec/VMMP/VMMP.parameter Raw{
"ID": "16652983",
"ASIL": " ",
"Text": "Member/SWC_VMMP/01_PROD/30_CG/DevTools/Spec/VMMP/VMMP.parameter",
"Type": "Information",
"Status": "",
"Summary": "",
"Relevant": "no",
"column_12": "",
"Foreign ID": "1380413",
"Description": "Member/SWC_VMMP/01_PROD/30_CG/DevTools/Spec/VMMP/VMMP.parameter",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} | |
| 7 | 16652984 | Information | no | False | type_not_target, status_filtered, relevance_filtered | Member/SWC_VMMP/01_PROD/30_CG/DevTools/Spec/VMMP/VMMP.signalMember/SWC_VMMP/01_PROD/30_CG/DevTools/Spec/VMMP/VMMP.signal Raw{
"ID": "16652984",
"ASIL": " ",
"Text": "Member/SWC_VMMP/01_PROD/30_CG/DevTools/Spec/VMMP/VMMP.signal",
"Type": "Information",
"Status": "",
"Summary": "",
"Relevant": "no",
"column_12": "",
"Foreign ID": "1380414",
"Description": "Member/SWC_VMMP/01_PROD/30_CG/DevTools/Spec/VMMP/VMMP.signal",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} | |
| 8 | 16652985 | Information | no | False | type_not_target, status_filtered, relevance_filtered | The valid versions of the signals and parameter files to be find in SWRS SWC_VMMP (SWRS_Id 1078981): Chapter 2 "Interface descriptThe valid versions of the signals and parameter files to be find in SWRS SWC_VMMP (SWRS_Id 1078981): Chapter 2 "Interface description" Raw{
"ID": "16652985",
"ASIL": " ",
"Text": "The valid versions of the signals and parameter files to be find in SWRS SWC_VMMP (SWRS_Id 1078981): Chapter 2 \"Interface description\"",
"Type": "Information",
"Status": "",
"Summary": "",
"Relevant": "no",
"column_12": "",
"Foreign ID": "1380412",
"Description": "The valid versions of the signals and parameter files to be find in SWRS SWC_VMMP (SWRS_Id 1078981): Chapter 2 \"Interface description\"",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} | |
| 9 | 16652986 | Information | no | False | type_not_target, status_filtered, relevance_filtered | The valid version of the signal and parameter files for test basis to be find in CG, which to be testedThe valid version of the signal and parameter files for test basis to be find in CG, which to be tested Raw{
"ID": "16652986",
"ASIL": " ",
"Text": "The valid version of the signal and parameter files for test basis to be find in CG, which to be tested",
"Type": "Information",
"Status": "",
"Summary": "",
"Relevant": "no",
"column_12": "",
"Foreign ID": "1380411",
"Description": "The valid version of the signal and parameter files for test basis to be find in CG, which to be tested",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} | |
| 10 | 16652987 | Non-functional | Released | no | False | type_not_target, relevance_filtered | All outputs described in this document shall behave within the physical maximum and minumum values which are specified in SPE.All outputs described in this document shall behave within the physical maximum and minumum values which are specified in SPE. Raw{
"ID": "16652987",
"ASIL": " QM",
"Text": "All outputs described in this document shall behave within the physical maximum and minumum values which are specified in SPE.",
"Type": "Non-functional",
"Status": "Released",
"Summary": "",
"Relevant": "no",
"column_12": "",
"Foreign ID": "1356957",
"Description": "All outputs described in this document shall behave within the physical maximum and minumum values which are specified in SPE.",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} |
| 11 | 16652988 | Non-functional | Released | no | False | type_not_target, relevance_filtered | All inputs described in this document will behave within the physical maximum and minumum values which are specified in SPE.All inputs described in this document will behave within the physical maximum and minumum values which are specified in SPE. Raw{
"ID": "16652988",
"ASIL": " QM",
"Text": "All inputs described in this document will behave within the physical maximum and minumum values which are specified in SPE.",
"Type": "Non-functional",
"Status": "Released",
"Summary": "",
"Relevant": "no",
"column_12": "",
"Foreign ID": "1389984",
"Description": "All inputs described in this document will behave within the physical maximum and minumum values which are specified in SPE.",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} |
| 12 | 16652989 | Folder | no | False | type_not_target, status_filtered, relevance_filtered | Presetting/Framework/DefinitionsPresetting/Framework/Definitions Raw{
"ID": "16652989",
"ASIL": " ",
"Text": "Presetting/Framework/Definitions",
"Type": "Folder",
"Status": "",
"Summary": "Presetting/Framework/Definitions",
"Relevant": "no",
"column_12": "",
"Foreign ID": "1077006",
"Description": "",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} | |
| 13 | 16652990 | Folder | no | False | type_not_target, status_filtered, relevance_filtered | TraceabilityTraceability Raw{
"ID": "16652990",
"ASIL": " ",
"Text": "Traceability",
"Type": "Folder",
"Status": "",
"Summary": "Traceability",
"Relevant": "no",
"column_12": "",
"Foreign ID": "1307722",
"Description": "",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} | |
| 14 | 16652991 | Information | no | False | type_not_target, status_filtered, relevance_filtered | SWRS to Testcase: The latest revision of the test specification document is valid for the tracability SWRS to TestcaseSWRS to Testcase: The latest revision of the test specification document is valid for the tracability SWRS to Testcase Raw{
"ID": "16652991",
"ASIL": " ",
"Text": "SWRS to Testcase:\n_x000D_No InterWiki reference defined in properties for 'integrity'\n_x000D_The latest revision of the test specification document is valid for the tracability SWRS to Testcase",
"Type": "Information",
"Status": "",
"Summary": "",
"Relevant": "no",
"column_12": "",
"Foreign ID": "1307721",
"Description": "SWRS to Testcase:\n_x000D_No InterWiki reference defined in properties for 'integrity'\n_x000D_The latest revision of the test specification document is valid for the tracability SWRS to Testcase",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} | |
| 15 | 16652992 | Information | no | False | type_not_target, status_filtered, relevance_filtered | SWRS to CodeBeamer: Codebeamer-IDs are mentioned in the SWRS atrribute DOORS IDs. The latest baseline of the specification docuSWRS to CodeBeamer: Codebeamer-IDs are mentioned in the SWRS atrribute DOORS IDs. The latest baseline of the specification document (Codebeamer) is valid for the traceability SWRS to Codebeamer. Raw{
"ID": "16652992",
"ASIL": " ",
"Text": "SWRS to CodeBeamer:\n_x000D_ \n_x000D_Codebeamer-IDs are mentioned in the SWRS atrribute DOORS IDs. \n_x000D_The latest baseline of the specification document (Codebeamer) is valid for the traceability SWRS to Codebeamer.",
"Type": "Information",
"Status": "",
"Summary": "",
"Relevant": "no",
"column_12": "",
"Foreign ID": "1307720",
"Description": "SWRS to CodeBeamer:\n_x000D_ \n_x000D_Codebeamer-IDs are mentioned in the SWRS atrribute DOORS IDs. \n_x000D_The latest baseline of the specification document (Codebeamer) is valid for the traceability SWRS to Codebeamer.",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} | |
| 16 | 16652993 | Folder | no | False | type_not_target, status_filtered, relevance_filtered | ToolchainToolchain Raw{
"ID": "16652993",
"ASIL": " ",
"Text": "Toolchain",
"Type": "Folder",
"Status": "",
"Summary": "Toolchain",
"Relevant": "no",
"column_12": "",
"Foreign ID": "1077011",
"Description": "",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} | |
| 17 | 16652994 | Non-functional | Released | no | False | type_not_target, relevance_filtered | The Matlab/Simulink/TargetLink versions have to be used according to the HCP1-Toolchain.The Matlab/Simulink/TargetLink versions have to be used according to the HCP1-Toolchain. Raw{
"ID": "16652994",
"ASIL": " QM",
"Text": "The Matlab/Simulink/TargetLink versions have to be used according to the HCP1-Toolchain.",
"Type": "Non-functional",
"Status": "Released",
"Summary": "",
"Relevant": "no",
"column_12": "",
"Foreign ID": "1077019",
"Description": "The Matlab/Simulink/TargetLink versions have to be used according to the HCP1-Toolchain.",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} |
| 18 | 16652995 | Non-functional | Released | no | False | type_not_target, relevance_filtered | For modeling in Simulink the valid EnProVe catalogue of guidelines has to be used.For modeling in Simulink the valid EnProVe catalogue of guidelines has to be used. Raw{
"ID": "16652995",
"ASIL": " QM",
"Text": "For modeling in Simulink the valid EnProVe catalogue of guidelines has to be used.",
"Type": "Non-functional",
"Status": "Released",
"Summary": "",
"Relevant": "no",
"column_12": "",
"Foreign ID": "1080642",
"Description": "For modeling in Simulink the valid EnProVe catalogue of guidelines has to be used.",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} |
| 19 | 16652996 | Folder | no | False | type_not_target, status_filtered, relevance_filtered | TolerancesTolerances Raw{
"ID": "16652996",
"ASIL": " ",
"Text": "Tolerances",
"Type": "Folder",
"Status": "",
"Summary": "Tolerances",
"Relevant": "no",
"column_12": "",
"Foreign ID": "1077012",
"Description": "",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} | |
| 20 | 16652997 | Non-functional | Released | no | False | type_not_target, relevance_filtered | The allowed B2B deviation for all output-signals to the expected reactions is defined by the following tolerances:The allowed B2B deviation for all output-signals to the expected reactions is defined by the following tolerances: Raw{
"ID": "16652997",
"ASIL": " QM",
"Text": "The allowed B2B deviation for all output-signals to the expected reactions is defined by the following tolerances:",
"Type": "Non-functional",
"Status": "Released",
"Summary": "",
"Relevant": "no",
"column_12": "",
"Foreign ID": "1077021",
"Description": "The allowed B2B deviation for all output-signals to the expected reactions is defined by the following tolerances:",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} |
| 21 | 16652998 | Non-functional | Released | no | False | type_not_target, relevance_filtered | Bool: No deviation allowedBool: No deviation allowed Raw{
"ID": "16652998",
"ASIL": " QM",
"Text": "\n_x000D_ \n_x000D_ Bool: No deviation allowed",
"Type": "Non-functional",
"Status": "Released",
"Summary": "",
"Relevant": "no",
"column_12": "",
"Foreign ID": "1095322",
"Description": "\n_x000D_ \n_x000D_ Bool: No deviation allowed",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} |
| 22 | 16652999 | Non-functional | Released | no | False | type_not_target, relevance_filtered | UInt, Int: No deviation allowedUInt, Int: No deviation allowed Raw{
"ID": "16652999",
"ASIL": " QM",
"Text": "UInt, Int: No deviation allowed",
"Type": "Non-functional",
"Status": "Released",
"Summary": "",
"Relevant": "no",
"column_12": "",
"Foreign ID": "1095319",
"Description": "UInt, Int: No deviation allowed",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} |
| 23 | 16653000 | Non-functional | Released | no | False | type_not_target, relevance_filtered | Float: 0.1% related to the permissible value range of the signalFloat: 0.1% related to the permissible value range of the signal Raw{
"ID": "16653000",
"ASIL": " QM",
"Text": "Float: 0.1% related to the permissible value range of the signal",
"Type": "Non-functional",
"Status": "Released",
"Summary": "",
"Relevant": "no",
"column_12": "",
"Foreign ID": "1095320",
"Description": "Float: 0.1% related to the permissible value range of the signal",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} |
| 24 | 16653001 | Non-functional | Released | no | False | type_not_target, relevance_filtered | It must be ensured that an output reaction occurs due to an event at the input within the same calculation step.It must be ensured that an output reaction occurs due to an event at the input within the same calculation step. Raw{
"ID": "16653001",
"ASIL": " QM",
"Text": "It must be ensured that an output reaction occurs due to an event at the input within the same calculation step.",
"Type": "Non-functional",
"Status": "Released",
"Summary": "",
"Relevant": "no",
"column_12": "",
"Foreign ID": "1095321",
"Description": "It must be ensured that an output reaction occurs due to an event at the input within the same calculation step.",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} |
| 25 | 16653002 | Folder | no | False | type_not_target, status_filtered, relevance_filtered | RequirementsRequirements Raw{
"ID": "16653002",
"ASIL": " ",
"Text": "Requirements",
"Type": "Folder",
"Status": "",
"Summary": "Requirements",
"Relevant": "no",
"column_12": "",
"Foreign ID": "1218350",
"Description": "",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} | |
| 26 | 16653003 | Information | no | False | type_not_target, status_filtered, relevance_filtered | For a better understanding of this quite complex modul this specification uses some variables, which are written in cursive and arFor a better understanding of this quite complex modul this specification uses some variables, which are written in cursive and are described in other sub-chapters or requirements. Variables used: generally valid: - gradient formed Demand *ADF_ADmd (see chapter Item 1218387 valid in chapter LgtCtlA - ADmdTarCtl (see chapter Item 1218974 valid in chapter LgtLimA - ADmdTarLim (see chapter Item 1218977 Verbal links to a specific chapter are also written in cursive. One precondition at the beginning of each chapter or sub-chapter is often used to enables the specific chapter. If the chapter is not valid (Precondition not true), its requirements and sub-chapters are automatically invalid and can not be applied. Therefore it is necessary to take the structure of contents into account. If this chapter is invalid, some other chapter or requirement will be valid. The default behavior of the outputs are also often described at the beginning of the chapter. It applies if no other condition fits the situation. Raw{
"ID": "16653003",
"ASIL": " ",
"Text": "For a better understanding of this quite complex modul this specification uses some variables, which are written in cursive and are described in other sub-chapters or requirements.\n_x000D_Variables used:\n_x000D_ \n_x000D_ \n_x000D_generally valid:\n_x000D_- gradient formed Demand *ADF_ADmd (see chapter Item 1218387\n_x000D_valid in chapter LgtCtlA \n_x000D_- ADmdTarCtl (see chapter Item 1218974\n_x000D_valid in chapter LgtLimA\n_x000D_- ADmdTarLim (see chapter Item 1218977\n_x000D_ \n_x000D_ \n_x000D_Verbal links to a specific chapter are also written in cursive. \n_x000D_One precondition at the beginning of each chapter or sub-chapter is often used to enables the specific chapter. If the chapter is not valid (Precondition not true), its requirements and sub-chapters are automatically invalid and can not be applied. Therefore it is necessary to take the structure of contents into account. If this chapter is invalid, some other chapter or requirement will be valid.\n_x000D_The default behavior of the outputs are also often described at the beginning of the chapter. It applies if no other condition fits the situation.",
"Type": "Information",
"Status": "",
"Summary": "",
"Relevant": "no",
"column_12": "",
"Foreign ID": "1219260",
"Description": "For a better understanding of this quite complex modul this specification uses some variables, which are written in cursive and are described in other sub-chapters or requirements.\n_x000D_Variables used:\n_x000D_ \n_x000D_ \n_x000D_generally valid:\n_x000D_- gradient formed Demand *ADF_ADmd (see chapter Item 1218387\n_x000D_valid in chapter LgtCtlA \n_x000D_- ADmdTarCtl (see chapter Item 1218974\n_x000D_valid in chapter LgtLimA\n_x000D_- ADmdTarLim (see chapter Item 1218977\n_x000D_ \n_x000D_ \n_x000D_Verbal links to a specific chapter are also written in cursive. \n_x000D_One precondition at the beginning of each chapter or sub-chapter is often used to enables the specific chapter. If the chapter is not valid (Precondition not true), its requirements and sub-chapters are automatically invalid and can not be applied. Therefore it is necessary to take the structure of contents into account. If this chapter is invalid, some other chapter or requirement will be valid.\n_x000D_The default behavior of the outputs are also often described at the beginning of the chapter. It applies if no other condition fits the situation.",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} | |
| 27 | 16653004 | Folder | no | False | type_not_target, status_filtered, relevance_filtered | gradient forming ADmdgradient forming ADmd Raw{
"ID": "16653004",
"ASIL": " ",
"Text": "gradient forming ADmd",
"Type": "Folder",
"Status": "",
"Summary": "gradient forming ADmd",
"Relevant": "no",
"column_12": "",
"Foreign ID": "1218385",
"Description": "",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} | |
| 28 | 16653005 | Information | no | False | type_not_target, status_filtered, relevance_filtered | The main purpose of this module is to form an acceleration demand, which the control can handle. Therefore the acceleration demandThe main purpose of this module is to form an acceleration demand, which the control can handle. Therefore the acceleration demand of the external function *ADmd will be formed with maximal gradients. This is described in this chapter and will be used further on. Inputs: *ADmd *GrdMaxInc *GrdMaxDec *ADmd_lastcycle Output: gradient formed Demand *ADF_ADmd Raw{
"ID": "16653005",
"ASIL": " ",
"Text": "The main purpose of this module is to form an acceleration demand, which the control can handle. Therefore the acceleration demand of the external function *ADmd will be formed with maximal gradients. This is described in this chapter and will be used further on.\n_x000D_ \n_x000D_ \n_x000D_Inputs:\n_x000D_*ADmd \n_x000D_*GrdMaxInc \n_x000D_*GrdMaxDec \n_x000D_*ADmd_lastcycle\n_x000D_Output:\n_x000D_gradient formed Demand *ADF_ADmd",
"Type": "Information",
"Status": "",
"Summary": "The main purpose of this module is to form an acceleration demand~, which the control can handle. Therefore the acceleration demand of the external function *ADmd will be formed with maximal gradients. This is described in this chapter and will be used ..",
"Relevant": "no",
"column_12": "",
"Foreign ID": "1218387",
"Description": "The main purpose of this module is to form an acceleration demand, which the control can handle. Therefore the acceleration demand of the external function *ADmd will be formed with maximal gradients. This is described in this chapter and will be used further on.\n_x000D_ \n_x000D_ \n_x000D_Inputs:\n_x000D_*ADmd \n_x000D_*GrdMaxInc \n_x000D_*GrdMaxDec \n_x000D_*ADmd_lastcycle\n_x000D_Output:\n_x000D_gradient formed Demand *ADF_ADmd",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} | |
| 29 | 55057009 | Information | no | False | type_not_target, status_filtered, relevance_filtered | The main purpose of this module is to form an acceleration demand, which the control can handle. Therefore the acceleration demandThe main purpose of this module is to form an acceleration demand, which the control can handle. Therefore the acceleration demand of the external function *ADmd will be formed with maximal gradients. This is described in this chapter and will be used further on. Inputs: *ADmd *GrdMaxInc *GrdMaxDec *ADmd_lastcycle *IdxNotLead Output: gradient formed Demand *ADF_ADmd Raw{
"ID": "55057009",
"ASIL": " ",
"Text": "The main purpose of this module is to form an acceleration demand, which the control can handle. Therefore the acceleration demand of the external function *ADmd will be formed with maximal gradients. This is described in this chapter and will be used further on.\n_x000D_ \n_x000D_ \n_x000D_Inputs:\n_x000D_*ADmd \n_x000D_*GrdMaxInc \n_x000D_*GrdMaxDec \n_x000D_*ADmd_lastcycle\n_x000D_*IdxNotLead\n_x000D_Output:\n_x000D_gradient formed Demand *ADF_ADmd",
"Type": "Information",
"Status": "",
"Summary": "The main purpose of this module is to form an acceleration demand~, which the control can handle. Therefore the acceleration demand of the external function *ADmd will be formed with maximal gradients. This is described in this chapter and will be used ..",
"Relevant": "no",
"column_12": "",
"Foreign ID": "",
"Description": "The main purpose of this module is to form an acceleration demand, which the control can handle. Therefore the acceleration demand of the external function *ADmd will be formed with maximal gradients. This is described in this chapter and will be used further on.\n_x000D_ \n_x000D_ \n_x000D_Inputs:\n_x000D_*ADmd \n_x000D_*GrdMaxInc \n_x000D_*GrdMaxDec \n_x000D_*ADmd_lastcycle\n_x000D_*IdxNotLead\n_x000D_Output:\n_x000D_gradient formed Demand *ADF_ADmd",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} | |
| 30 | 16653006 | Pre Condition | Released | no | False | type_not_target, relevance_filtered | For the first calculation cycle (start of simulation or processor startup) *ADmd_lastcycle is 0 (zero).For the first calculation cycle (start of simulation or processor startup) *ADmd_lastcycle is 0 (zero). Raw{
"ID": "16653006",
"ASIL": " QM",
"Text": "For the first calculation cycle (start of simulation or processor startup) *ADmd_lastcycle is 0 (zero).",
"Type": "Pre Condition",
"Status": "Released",
"Summary": "",
"Relevant": "no",
"column_12": "",
"Foreign ID": "1224829",
"Description": "For the first calculation cycle (start of simulation or processor startup) *ADmd_lastcycle is 0 (zero).",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} |
| 31 | 55054957 | Pre Condition | Released | no | False | type_not_target, relevance_filtered | IF[OR(1,AND(2,3))]: 1) *IdxNotLead is true 2) VMMP_LOCADF_p_SwtAcvAGrdLimRlsFlgAcv is true 3) LOCAA_s_LgtCtlA_FlgAcv is false OIF[OR(1,AND(2,3))]: 1) *IdxNotLead is true 2) VMMP_LOCADF_p_SwtAcvAGrdLimRlsFlgAcv is true 3) LOCAA_s_LgtCtlA_FlgAcv is false OR LOCACS_s_StACtl is equal to VMMP_LOCACS_c_StACtlNotAcv THEN: ASOPOTgradienttransition is True ELSE: IF [1] 1) The absolute value of the difference between *ADmd_lastcycle and the input ASOPOT_s_ATqDmd is smaller than VMMP_LOCADF_p_AThRlsADmdGrdLim THEN: ASOPOTgradienttransition is False Info: This is an SR-FlipFlop. Raw{
"ID": "55054957",
"ASIL": " QM",
"Text": "IF[OR(1,AND(2,3))]:\n_x000D_1) *IdxNotLead is true\n_x000D_2) VMMP_LOCADF_p_SwtAcvAGrdLimRlsFlgAcv is true\n_x000D_3) LOCAA_s_LgtCtlA_FlgAcv is false OR LOCACS_s_StACtl is equal to VMMP_LOCACS_c_StACtlNotAcv\n_x000D_THEN:\n_x000D_ASOPOTgradienttransition is True\n_x000D_ELSE:\n_x000D_IF [1]\n_x000D_1) The absolute value of the difference between *ADmd_lastcycle and the input ASOPOT_s_ATqDmd is smaller than VMMP_LOCADF_p_AThRlsADmdGrdLim\n_x000D_THEN:\n_x000D_ASOPOTgradienttransition is False\n_x000D_ \n_x000D_Info: This is an SR-FlipFlop.",
"Type": "Pre Condition",
"Status": "Released",
"Summary": "",
"Relevant": "no",
"column_12": "",
"Foreign ID": "",
"Description": "IF[OR(1,AND(2,3))]:\n_x000D_1) *IdxNotLead is true\n_x000D_2) VMMP_LOCADF_p_SwtAcvAGrdLimRlsFlgAcv is true\n_x000D_3) LOCAA_s_LgtCtlA_FlgAcv is false OR LOCACS_s_StACtl is equal to VMMP_LOCACS_c_StACtlNotAcv\n_x000D_THEN:\n_x000D_ASOPOTgradienttransition is True\n_x000D_ELSE:\n_x000D_IF [1]\n_x000D_1) The absolute value of the difference between *ADmd_lastcycle and the input ASOPOT_s_ATqDmd is smaller than VMMP_LOCADF_p_AThRlsADmdGrdLim\n_x000D_THEN:\n_x000D_ASOPOTgradienttransition is False\n_x000D_ \n_x000D_Info: This is an SR-FlipFlop.",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} |
| 32 | 16653007 | Pre Condition | Released | no | False | type_not_target, relevance_filtered | IF [1] 1) *ADmd is bigger than or equal to *ADmd_lastcycle THEN: The output *ADF_ADmd is equal to the minimum of *ADmd and tIF [1] 1) *ADmd is bigger than or equal to *ADmd_lastcycle THEN: The output *ADF_ADmd is equal to the minimum of *ADmd and the sum of the maximum of *ADmd_lastcycle and the input ASOPOT_s_ATqDmd and the input value *AGrdMaxInc multiplied by the cycle time VMMP_c_TiSmpl. Raw{
"ID": "16653007",
"ASIL": " QM",
"Text": "IF [1] \n_x000D_1) *ADmd is bigger than or equal to *ADmd_lastcycle\n_x000D_THEN: \n_x000D_The output\n_x000D_*ADF_ADmd is equal to the minimum of *ADmd and the sum of the maximum of *ADmd_lastcycle\n_x000D_and the input ASOPOT_s_ATqDmd and the input value *AGrdMaxInc multiplied by the cycle time VMMP_c_TiSmpl.",
"Type": "Pre Condition",
"Status": "Released",
"Summary": "",
"Relevant": "no",
"column_12": "",
"Foreign ID": "1219136",
"Description": "IF [1] \n_x000D_1) *ADmd is bigger than or equal to *ADmd_lastcycle\n_x000D_THEN: \n_x000D_The output\n_x000D_*ADF_ADmd is equal to the minimum of *ADmd and the sum of the maximum of *ADmd_lastcycle\n_x000D_and the input ASOPOT_s_ATqDmd and the input value *AGrdMaxInc multiplied by the cycle time VMMP_c_TiSmpl.",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} |
| 33 | 55057043 | Pre Condition | Released | no | False | type_not_target, relevance_filtered | IF [AND(1,2)] 1) *ADmd is greater than or equal to *ADmd_lastcycle 2) ASOPOTgradienttransition is True THEN: The output *ADFIF [AND(1,2)] 1) *ADmd is greater than or equal to *ADmd_lastcycle 2) ASOPOTgradienttransition is True THEN: The output *ADF_ADmd is equal to the minimum of *ADmd and the sum of the maximum of *ADmd_lastcycle and the input ASOPOT_s_ATqDmd and the product of the input value *AGrdMaxInc and the cycle time VMMP_c_TiSmpl. Raw{
"ID": "55057043",
"ASIL": " QM",
"Text": "IF [AND(1,2)]\n_x000D_1) *ADmd is greater than or equal to *ADmd_lastcycle\n_x000D_2) ASOPOTgradienttransition is True\n_x000D_THEN: \n_x000D_The output\n_x000D_*ADF_ADmd is equal to the minimum of *ADmd and the sum of the maximum of *ADmd_lastcycle\n_x000D_and the input ASOPOT_s_ATqDmd and the product of the input value *AGrdMaxInc and the cycle time VMMP_c_TiSmpl.",
"Type": "Pre Condition",
"Status": "Released",
"Summary": "",
"Relevant": "no",
"column_12": "",
"Foreign ID": "",
"Description": "IF [AND(1,2)]\n_x000D_1) *ADmd is greater than or equal to *ADmd_lastcycle\n_x000D_2) ASOPOTgradienttransition is True\n_x000D_THEN: \n_x000D_The output\n_x000D_*ADF_ADmd is equal to the minimum of *ADmd and the sum of the maximum of *ADmd_lastcycle\n_x000D_and the input ASOPOT_s_ATqDmd and the product of the input value *AGrdMaxInc and the cycle time VMMP_c_TiSmpl.",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} |
| 34 | 55057076 | Pre Condition | Released | no | False | type_not_target, relevance_filtered | IF [AND(1,2)] 1) *ADmd is greater than or equal to *ADmd_lastcycle 2) ASOPOTgradienttransition is False THEN: The output *ADIF [AND(1,2)] 1) *ADmd is greater than or equal to *ADmd_lastcycle 2) ASOPOTgradienttransition is False THEN: The output *ADF_ADmd is equal to the minimum of *ADmd and the sum of *ADmd_lastcycle and the product of the input value *AGrdMaxInc and the cycle time VMMP_c_TiSmpl. Raw{
"ID": "55057076",
"ASIL": " QM",
"Text": "IF [AND(1,2)]\n_x000D_1) *ADmd is greater than or equal to *ADmd_lastcycle\n_x000D_2) ASOPOTgradienttransition\n_x000D_is False\n_x000D_THEN: \n_x000D_The output *ADF_ADmd is equal to the minimum of *ADmd and the sum of *ADmd_lastcycle\n_x000D_and the product of the input value *AGrdMaxInc and the cycle time VMMP_c_TiSmpl.",
"Type": "Pre Condition",
"Status": "Released",
"Summary": "",
"Relevant": "no",
"column_12": "",
"Foreign ID": "",
"Description": "IF [AND(1,2)]\n_x000D_1) *ADmd is greater than or equal to *ADmd_lastcycle\n_x000D_2) ASOPOTgradienttransition\n_x000D_is False\n_x000D_THEN: \n_x000D_The output *ADF_ADmd is equal to the minimum of *ADmd and the sum of *ADmd_lastcycle\n_x000D_and the product of the input value *AGrdMaxInc and the cycle time VMMP_c_TiSmpl.",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} |
| 35 | 16653008 | Pre Condition | Released | no | False | type_not_target, relevance_filtered | IF [1] 1) *ADmd is smaller than *ADmd_lastcycle THEN: The output *ADF_ADmd is equal to the maximum of *ADmd and the sum of thIF [1] 1) *ADmd is smaller than *ADmd_lastcycle THEN: The output *ADF_ADmd is equal to the maximum of *ADmd and the sum of the minimum *ADmd_lastcycle and the input ASOPOT_s_ATqDmd and the input value *AGrdMaxDec multiplied by the cycle time VMMP_c_TiSmpl. Raw{
"ID": "16653008",
"ASIL": " QM",
"Text": "IF [1] \n_x000D_1) *ADmd is smaller than *ADmd_lastcycle\n_x000D_THEN: \n_x000D_The output *ADF_ADmd is equal to the maximum of *ADmd and the sum of the minimum *ADmd_lastcycle \n_x000D_and the input ASOPOT_s_ATqDmd and the input value *AGrdMaxDec multiplied by the cycle time VMMP_c_TiSmpl.",
"Type": "Pre Condition",
"Status": "Released",
"Summary": "",
"Relevant": "no",
"column_12": "",
"Foreign ID": "1312970",
"Description": "IF [1] \n_x000D_1) *ADmd is smaller than *ADmd_lastcycle\n_x000D_THEN: \n_x000D_The output *ADF_ADmd is equal to the maximum of *ADmd and the sum of the minimum *ADmd_lastcycle \n_x000D_and the input ASOPOT_s_ATqDmd and the input value *AGrdMaxDec multiplied by the cycle time VMMP_c_TiSmpl.",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} |
| 36 | 55057046 | Pre Condition | Released | no | False | type_not_target, relevance_filtered | IF [AND(1,2)] 1) *ADmd is smaller than *ADmd_lastcycle 2) ASOPOTgradienttransition is True THEN: The output *ADF_ADmd is equIF [AND(1,2)] 1) *ADmd is smaller than *ADmd_lastcycle 2) ASOPOTgradienttransition is True THEN: The output *ADF_ADmd is equal to the maximum of *ADmd and the sum of the minimum of *ADmd_lastcycle and the input ASOPOT_s_ATqDmd and the product of the input value *AGrdMaxDec and the cycle time VMMP_c_TiSmpl. Raw{
"ID": "55057046",
"ASIL": " QM",
"Text": "IF [AND(1,2)]\n_x000D_1) *ADmd is smaller than *ADmd_lastcycle\n_x000D_2) ASOPOTgradienttransition\n_x000D_is True\n_x000D_THEN: \n_x000D_The output *ADF_ADmd is equal to the maximum of *ADmd and the sum of the minimum of *ADmd_lastcycle \n_x000D_and the input ASOPOT_s_ATqDmd and the product of the input value *AGrdMaxDec and the cycle time VMMP_c_TiSmpl.",
"Type": "Pre Condition",
"Status": "Released",
"Summary": "",
"Relevant": "no",
"column_12": "",
"Foreign ID": "",
"Description": "IF [AND(1,2)]\n_x000D_1) *ADmd is smaller than *ADmd_lastcycle\n_x000D_2) ASOPOTgradienttransition\n_x000D_is True\n_x000D_THEN: \n_x000D_The output *ADF_ADmd is equal to the maximum of *ADmd and the sum of the minimum of *ADmd_lastcycle \n_x000D_and the input ASOPOT_s_ATqDmd and the product of the input value *AGrdMaxDec and the cycle time VMMP_c_TiSmpl.",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} |
| 37 | 55057210 | Pre Condition | Released | no | False | type_not_target, relevance_filtered | IF [AND(1,2)] 1) *ADmd is smaller than *ADmd_lastcycle 2) ASOPOTgradienttransition is False THEN: The output *ADF_ADmd is eIF [AND(1,2)] 1) *ADmd is smaller than *ADmd_lastcycle 2) ASOPOTgradienttransition is False THEN: The output *ADF_ADmd is equal to the maximum of *ADmd and the sum of *ADmd_lastcycle and the product of the input value *AGrdMaxDec and the cycle time VMMP_c_TiSmpl. Raw{
"ID": "55057210",
"ASIL": " QM",
"Text": "IF [AND(1,2)] \n_x000D_1) *ADmd is smaller than *ADmd_lastcycle\n_x000D_2) ASOPOTgradienttransition\n_x000D_ \n_x000D_is False\n_x000D_THEN: \n_x000D_The output *ADF_ADmd is equal to the maximum of *ADmd and the sum of *ADmd_lastcycle \n_x000D_and the product of the input value *AGrdMaxDec and the cycle time VMMP_c_TiSmpl.",
"Type": "Pre Condition",
"Status": "Released",
"Summary": "",
"Relevant": "no",
"column_12": "",
"Foreign ID": "",
"Description": "IF [AND(1,2)] \n_x000D_1) *ADmd is smaller than *ADmd_lastcycle\n_x000D_2) ASOPOTgradienttransition\n_x000D_ \n_x000D_is False\n_x000D_THEN: \n_x000D_The output *ADF_ADmd is equal to the maximum of *ADmd and the sum of *ADmd_lastcycle \n_x000D_and the product of the input value *AGrdMaxDec and the cycle time VMMP_c_TiSmpl.",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} |
| 38 | 16653009 | Folder | no | False | type_not_target, status_filtered, relevance_filtered | gradient forming ATlrHiDyngradient forming ATlrHiDyn Raw{
"ID": "16653009",
"ASIL": " ",
"Text": "gradient forming ATlrHiDyn",
"Type": "Folder",
"Status": "",
"Summary": "gradient forming ATlrHiDyn",
"Relevant": "no",
"column_12": "",
"Foreign ID": "1312973",
"Description": "",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} | |
| 39 | 16653010 | Pre Condition | Released | no | False | type_not_target, relevance_filtered | IF[AND(1,2)] 1.) LOCCTC_s_TqWhlDmd_TqTlrHiDyn is smaller than 0 (zero) 2.) DSOPRE_s_FlgBrkMScaAcv is active THEN: ATlrHiMaxInIF[AND(1,2)] 1.) LOCCTC_s_TqWhlDmd_TqTlrHiDyn is smaller than 0 (zero) 2.) DSOPRE_s_FlgBrkMScaAcv is active THEN: ATlrHiMaxIni shall be (LOCCTC_s_TqWhlDmd_TqTlrHiDyn / VSOVD_s_FacMVehBrk - LOCAFBC_s_TqDmdCtl - VSOVD_s_TqDrvRstnCor + VSOVD_s_TqLgtSlopRoadCorHiAcu) / VSOVD_s_MVehVirtJ x VSOVD_s_RdDynCor ELSE: ATlrHiMaxIni shall be (LOCCTC_s_TqWhlDmd_TqTlrHiDyn - LOCAFBC_s_TqDmdCtl - VSOVD_s_TqDrvRstnCor + VSOVD_s_TqLgtSlopRoadCorHiAcu) / VSOVD_s_MVehVirtJ x VSOVD_s_RdDynCor Raw{
"ID": "16653010",
"ASIL": " QM",
"Text": "IF[AND(1,2)]\n_x000D_1.) LOCCTC_s_TqWhlDmd_TqTlrHiDyn is smaller than 0 (zero)\n_x000D_2.) DSOPRE_s_FlgBrkMScaAcv is active\n_x000D_THEN: \n_x000D_ATlrHiMaxIni shall be (LOCCTC_s_TqWhlDmd_TqTlrHiDyn / VSOVD_s_FacMVehBrk - LOCAFBC_s_TqDmdCtl - VSOVD_s_TqDrvRstnCor + VSOVD_s_TqLgtSlopRoadCorHiAcu) / VSOVD_s_MVehVirtJ x VSOVD_s_RdDynCor\n_x000D_ELSE: \n_x000D_ATlrHiMaxIni shall be (LOCCTC_s_TqWhlDmd_TqTlrHiDyn - LOCAFBC_s_TqDmdCtl - VSOVD_s_TqDrvRstnCor + VSOVD_s_TqLgtSlopRoadCorHiAcu) / VSOVD_s_MVehVirtJ x VSOVD_s_RdDynCor",
"Type": "Pre Condition",
"Status": "Released",
"Summary": "",
"Relevant": "no",
"column_12": "",
"Foreign ID": "1341759",
"Description": "IF[AND(1,2)]\n_x000D_1.) LOCCTC_s_TqWhlDmd_TqTlrHiDyn is smaller than 0 (zero)\n_x000D_2.) DSOPRE_s_FlgBrkMScaAcv is active\n_x000D_THEN: \n_x000D_ATlrHiMaxIni shall be (LOCCTC_s_TqWhlDmd_TqTlrHiDyn / VSOVD_s_FacMVehBrk - LOCAFBC_s_TqDmdCtl - VSOVD_s_TqDrvRstnCor + VSOVD_s_TqLgtSlopRoadCorHiAcu) / VSOVD_s_MVehVirtJ x VSOVD_s_RdDynCor\n_x000D_ELSE: \n_x000D_ATlrHiMaxIni shall be (LOCCTC_s_TqWhlDmd_TqTlrHiDyn - LOCAFBC_s_TqDmdCtl - VSOVD_s_TqDrvRstnCor + VSOVD_s_TqLgtSlopRoadCorHiAcu) / VSOVD_s_MVehVirtJ x VSOVD_s_RdDynCor",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} |
| 40 | 16653011 | Information | no | False | type_not_target, status_filtered, relevance_filtered | The main purpose of this module is to form an acceleration demand, which the control can handle. Therefore the acceleration demandThe main purpose of this module is to form an acceleration demand, which the control can handle. Therefore the acceleration demand of the external function *ATlrHiDyn will be formed with maximal gradients. This is described in this chapter and will be used further on. Inputs: *ATlrHiDyn *GrdMaxInc *GrdMaxDec *ATlrHiDyn_lastcycle Output: gradient formed Demand *ADF_ATlrHiDyn Raw{
"ID": "16653011",
"ASIL": " ",
"Text": "The main purpose of this module is to form an acceleration demand, which the control can handle. Therefore the acceleration demand of the external function *ATlrHiDyn will be formed with maximal gradients. This is described in this chapter and will be used further on.\n_x000D_Inputs:\n_x000D_*ATlrHiDyn \n_x000D_*GrdMaxInc \n_x000D_*GrdMaxDec \n_x000D_*ATlrHiDyn_lastcycle\n_x000D_Output:\n_x000D_gradient formed Demand *ADF_ATlrHiDyn",
"Type": "Information",
"Status": "",
"Summary": "",
"Relevant": "no",
"column_12": "",
"Foreign ID": "1312972",
"Description": "The main purpose of this module is to form an acceleration demand, which the control can handle. Therefore the acceleration demand of the external function *ATlrHiDyn will be formed with maximal gradients. This is described in this chapter and will be used further on.\n_x000D_Inputs:\n_x000D_*ATlrHiDyn \n_x000D_*GrdMaxInc \n_x000D_*GrdMaxDec \n_x000D_*ATlrHiDyn_lastcycle\n_x000D_Output:\n_x000D_gradient formed Demand *ADF_ATlrHiDyn",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} | |
| 41 | 55081660 | Information | no | False | type_not_target, status_filtered, relevance_filtered | The main purpose of this module is to form an acceleration demand, which the control can handle. Therefore the acceleration demandThe main purpose of this module is to form an acceleration demand, which the control can handle. Therefore the acceleration demand of the external function *ATlrHiDyn will be formed with maximal gradients. This is described in this chapter and will be used further on. Inputs: *ATlrHiDyn *GrdMaxInc *GrdMaxDec *ATlrHiDyn_lastcycle *IdxNotLead Output: gradient formed Demand *ADF_ATlrHiDyn Raw{
"ID": "55081660",
"ASIL": " ",
"Text": "The main purpose of this module is to form an acceleration demand, which the control can handle. Therefore the acceleration demand of the external function *ATlrHiDyn will be formed with maximal gradients. This is described in this chapter and will be used further on.\n_x000D_ \n_x000D_ \n_x000D_Inputs:\n_x000D_*ATlrHiDyn \n_x000D_*GrdMaxInc \n_x000D_*GrdMaxDec \n_x000D_*ATlrHiDyn_lastcycle\n_x000D_*IdxNotLead \n_x000D_Output:\n_x000D_gradient formed Demand *ADF_ATlrHiDyn",
"Type": "Information",
"Status": "",
"Summary": "",
"Relevant": "no",
"column_12": "",
"Foreign ID": "",
"Description": "The main purpose of this module is to form an acceleration demand, which the control can handle. Therefore the acceleration demand of the external function *ATlrHiDyn will be formed with maximal gradients. This is described in this chapter and will be used further on.\n_x000D_ \n_x000D_ \n_x000D_Inputs:\n_x000D_*ATlrHiDyn \n_x000D_*GrdMaxInc \n_x000D_*GrdMaxDec \n_x000D_*ATlrHiDyn_lastcycle\n_x000D_*IdxNotLead \n_x000D_Output:\n_x000D_gradient formed Demand *ADF_ATlrHiDyn",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} | |
| 42 | 16653012 | Pre Condition | Released | no | False | type_not_target, relevance_filtered | For the first calculation cycle (start of simulation or processor startup) *ATlrHiDyn_lastcycle is 0 (zero).For the first calculation cycle (start of simulation or processor startup) *ATlrHiDyn_lastcycle is 0 (zero). Raw{
"ID": "16653012",
"ASIL": " QM",
"Text": "For the first calculation cycle (start of simulation or processor startup) *ATlrHiDyn_lastcycle is 0 (zero).",
"Type": "Pre Condition",
"Status": "Released",
"Summary": "",
"Relevant": "no",
"column_12": "",
"Foreign ID": "1312974",
"Description": "For the first calculation cycle (start of simulation or processor startup) *ATlrHiDyn_lastcycle is 0 (zero).",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} |
| 43 | 55081659 | Pre Condition | Released | no | False | type_not_target, relevance_filtered | IF[OR(1,AND(2,3))]: 1) *IdxNotLead is true 2) VMMP_LOCADF_p_SwtAcvAGrdLimRlsFlgAcv is true 3) LOCAA_s_LgtCtlA_FlgAcv is false OIF[OR(1,AND(2,3))]: 1) *IdxNotLead is true 2) VMMP_LOCADF_p_SwtAcvAGrdLimRlsFlgAcv is true 3) LOCAA_s_LgtCtlA_FlgAcv is false OR LOCACS_s_StACtl is equal to VMMP_LOCACS_c_StACtlNotAcv THEN: ASOPOTgradienttransition is True ELSE: IF [1] 1) The absolute value of the difference between *ADmd_lastcycle and the input ASOPOT_s_ATqDmd is smaller than VMMP_LOCADF_p_AThRlsADmdGrdLim THEN: ASOPOTgradienttransition is False Info: This is an SR-FlipFlop. Raw{
"ID": "55081659",
"ASIL": " QM",
"Text": "IF[OR(1,AND(2,3))]:\n_x000D_1) *IdxNotLead is true\n_x000D_2) VMMP_LOCADF_p_SwtAcvAGrdLimRlsFlgAcv is true\n_x000D_3) LOCAA_s_LgtCtlA_FlgAcv is false OR LOCACS_s_StACtl is equal to VMMP_LOCACS_c_StACtlNotAcv\n_x000D_THEN:\n_x000D_ASOPOTgradienttransition is True\n_x000D_ELSE:\n_x000D_IF [1]\n_x000D_1) The absolute value of the difference between *ADmd_lastcycle and the input ASOPOT_s_ATqDmd is smaller than VMMP_LOCADF_p_AThRlsADmdGrdLim\n_x000D_THEN:\n_x000D_ASOPOTgradienttransition is False\n_x000D_ \n_x000D_Info: This is an SR-FlipFlop.",
"Type": "Pre Condition",
"Status": "Released",
"Summary": "",
"Relevant": "no",
"column_12": "",
"Foreign ID": "",
"Description": "IF[OR(1,AND(2,3))]:\n_x000D_1) *IdxNotLead is true\n_x000D_2) VMMP_LOCADF_p_SwtAcvAGrdLimRlsFlgAcv is true\n_x000D_3) LOCAA_s_LgtCtlA_FlgAcv is false OR LOCACS_s_StACtl is equal to VMMP_LOCACS_c_StACtlNotAcv\n_x000D_THEN:\n_x000D_ASOPOTgradienttransition is True\n_x000D_ELSE:\n_x000D_IF [1]\n_x000D_1) The absolute value of the difference between *ADmd_lastcycle and the input ASOPOT_s_ATqDmd is smaller than VMMP_LOCADF_p_AThRlsADmdGrdLim\n_x000D_THEN:\n_x000D_ASOPOTgradienttransition is False\n_x000D_ \n_x000D_Info: This is an SR-FlipFlop.",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} |
| 44 | 16653013 | Pre Condition | Released | no | False | type_not_target, relevance_filtered | IF [1] 1) *ATlrHiDyn is greater than or equal to *ATlrHiDyn_lastcycle THEN: The output *ADF_ATlrHiDyn is equal to the minimuIF [1] 1) *ATlrHiDyn is greater than or equal to *ATlrHiDyn_lastcycle THEN: The output *ADF_ATlrHiDyn is equal to the minimum of *ATlrHiDyn and the sum of the maximum of *ATlrHiDyn_lastcycle and the input ASOPOT_s_ATqDmd and the input value *AGrdMaxInc multiplied by the cycle time VMMP_c_TiSmpl. Raw{
"ID": "16653013",
"ASIL": " QM",
"Text": "IF [1] \n_x000D_1) *ATlrHiDyn is greater than or equal to *ATlrHiDyn_lastcycle\n_x000D_THEN: \n_x000D_The output\n_x000D_*ADF_ATlrHiDyn is equal to the minimum of *ATlrHiDyn and the sum of the maximum of *ATlrHiDyn_lastcycle\n_x000D_and the input ASOPOT_s_ATqDmd and the input value *AGrdMaxInc multiplied by the cycle time VMMP_c_TiSmpl.",
"Type": "Pre Condition",
"Status": "Released",
"Summary": "",
"Relevant": "no",
"column_12": "",
"Foreign ID": "1312975",
"Description": "IF [1] \n_x000D_1) *ATlrHiDyn is greater than or equal to *ATlrHiDyn_lastcycle\n_x000D_THEN: \n_x000D_The output\n_x000D_*ADF_ATlrHiDyn is equal to the minimum of *ATlrHiDyn and the sum of the maximum of *ATlrHiDyn_lastcycle\n_x000D_and the input ASOPOT_s_ATqDmd and the input value *AGrdMaxInc multiplied by the cycle time VMMP_c_TiSmpl.",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} |
| 45 | 55081724 | Pre Condition | Released | no | False | type_not_target, relevance_filtered | IF [AND(1,2)] 1) *ATlrHiDyn is greater than or equal to *ATlrHiDyn_lastcycle 2) ASOPOTgradienttransition is True THEN: TheIF [AND(1,2)] 1) *ATlrHiDyn is greater than or equal to *ATlrHiDyn_lastcycle 2) ASOPOTgradienttransition is True THEN: The output *ADF_ATlrHiDyn is equal to the minimum of *ATlrHiDyn and the sum of the maximum of *ATlrHiDyn_lastcycle and the input ASOPOT_s_ATqDmd and the product of the input value *AGrdMaxInc and the cycle time VMMP_c_TiSmpl. Raw{
"ID": "55081724",
"ASIL": " QM",
"Text": "IF [AND(1,2)] \n_x000D_1) *ATlrHiDyn is greater than or equal to *ATlrHiDyn_lastcycle\n_x000D_2) ASOPOTgradienttransition\n_x000D_ \n_x000D_is True\n_x000D_THEN: \n_x000D_The output\n_x000D_*ADF_ATlrHiDyn is equal to the minimum of *ATlrHiDyn and the sum of the maximum of *ATlrHiDyn_lastcycle\n_x000D_and the input ASOPOT_s_ATqDmd and the product of the input value *AGrdMaxInc and the cycle time VMMP_c_TiSmpl.",
"Type": "Pre Condition",
"Status": "Released",
"Summary": "",
"Relevant": "no",
"column_12": "",
"Foreign ID": "",
"Description": "IF [AND(1,2)] \n_x000D_1) *ATlrHiDyn is greater than or equal to *ATlrHiDyn_lastcycle\n_x000D_2) ASOPOTgradienttransition\n_x000D_ \n_x000D_is True\n_x000D_THEN: \n_x000D_The output\n_x000D_*ADF_ATlrHiDyn is equal to the minimum of *ATlrHiDyn and the sum of the maximum of *ATlrHiDyn_lastcycle\n_x000D_and the input ASOPOT_s_ATqDmd and the product of the input value *AGrdMaxInc and the cycle time VMMP_c_TiSmpl.",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} |
| 46 | 55081927 | Pre Condition | Released | no | False | type_not_target, relevance_filtered | IF [AND(1,2)] 1) *ATlrHiDyn is greater than or equal to *ATlrHiDyn_lastcycle 2) ASOPOTgradienttransition is False THEN: TheIF [AND(1,2)] 1) *ATlrHiDyn is greater than or equal to *ATlrHiDyn_lastcycle 2) ASOPOTgradienttransition is False THEN: The output *ADF_ATlrHiDyn is equal to the minimum of *ATlrHiDyn and the sum of *ATlrHiDyn_lastcycle and the product of the input value *AGrdMaxInc and the cycle time VMMP_c_TiSmpl. Raw{
"ID": "55081927",
"ASIL": " QM",
"Text": "IF [AND(1,2)] \n_x000D_1) *ATlrHiDyn is greater than or equal to *ATlrHiDyn_lastcycle\n_x000D_2) ASOPOTgradienttransition\n_x000D_ \n_x000D_is False\n_x000D_THEN: \n_x000D_The output\n_x000D_*ADF_ATlrHiDyn is equal to the minimum of *ATlrHiDyn and the sum of *ATlrHiDyn_lastcycle\n_x000D_and the product of the input value *AGrdMaxInc and the cycle time VMMP_c_TiSmpl.",
"Type": "Pre Condition",
"Status": "Released",
"Summary": "",
"Relevant": "no",
"column_12": "",
"Foreign ID": "",
"Description": "IF [AND(1,2)] \n_x000D_1) *ATlrHiDyn is greater than or equal to *ATlrHiDyn_lastcycle\n_x000D_2) ASOPOTgradienttransition\n_x000D_ \n_x000D_is False\n_x000D_THEN: \n_x000D_The output\n_x000D_*ADF_ATlrHiDyn is equal to the minimum of *ATlrHiDyn and the sum of *ATlrHiDyn_lastcycle\n_x000D_and the product of the input value *AGrdMaxInc and the cycle time VMMP_c_TiSmpl.",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} |
| 47 | 16653014 | Pre Condition | Released | no | False | type_not_target, relevance_filtered | IF [AND(1,2,3,4)] 1) *ATlrHiDyn is smaller than *ATlrHiDyn_lastcycle 2) ASOPOT_s_ATqDmd is smaller than 0 3) ASOPOT_s_ATqDmd iIF [AND(1,2,3,4)] 1) *ATlrHiDyn is smaller than *ATlrHiDyn_lastcycle 2) ASOPOT_s_ATqDmd is smaller than 0 3) ASOPOT_s_ATqDmd is smaller than ASOPOT_s_ATqAct 4) ASOPOT_s_ATqDmd is smaller than ATlrHiMaxIni The output *ADF_ATlrHiDyn is equal to the maximum of *ATlrHiDyn and the sum of the input value *AGrdMaxDec multiplied by the cycle time VMMP_c_TiSmpl.and the minuimum of 0, ASOPOT_s_ATqAct, ATlrHiMaxIni and ATlrHiDyn_lastcycle. Raw{
"ID": "16653014",
"ASIL": " QM",
"Text": "IF [AND(1,2,3,4)] \n_x000D_1) *ATlrHiDyn is smaller than *ATlrHiDyn_lastcycle\n_x000D_2) ASOPOT_s_ATqDmd is smaller than 0\n_x000D_3) ASOPOT_s_ATqDmd is smaller than ASOPOT_s_ATqAct\n_x000D_4) ASOPOT_s_ATqDmd is smaller than ATlrHiMaxIni \n_x000D_The output *ADF_ATlrHiDyn is equal to the\n_x000D_maximum of *ATlrHiDyn and the sum of the input value *AGrdMaxDec multiplied by the cycle time VMMP_c_TiSmpl.and the minuimum of 0, ASOPOT_s_ATqAct, ATlrHiMaxIni and ATlrHiDyn_lastcycle.",
"Type": "Pre Condition",
"Status": "Released",
"Summary": "",
"Relevant": "no",
"column_12": "",
"Foreign ID": "1312976",
"Description": "IF [AND(1,2,3,4)] \n_x000D_1) *ATlrHiDyn is smaller than *ATlrHiDyn_lastcycle\n_x000D_2) ASOPOT_s_ATqDmd is smaller than 0\n_x000D_3) ASOPOT_s_ATqDmd is smaller than ASOPOT_s_ATqAct\n_x000D_4) ASOPOT_s_ATqDmd is smaller than ATlrHiMaxIni \n_x000D_The output *ADF_ATlrHiDyn is equal to the\n_x000D_maximum of *ATlrHiDyn and the sum of the input value *AGrdMaxDec multiplied by the cycle time VMMP_c_TiSmpl.and the minuimum of 0, ASOPOT_s_ATqAct, ATlrHiMaxIni and ATlrHiDyn_lastcycle.",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} |
| 48 | 55147482 | Pre Condition | Released | no | False | type_not_target, relevance_filtered | IF [AND(1,2,3,4,5)] 1) *ATlrHiDyn is smaller than *ATlrHiDyn_lastcycle 2) ASOPOT_s_ATqDmd is smaller than 0 3) ASOPOT_s_ATqDmdIF [AND(1,2,3,4,5)] 1) *ATlrHiDyn is smaller than *ATlrHiDyn_lastcycle 2) ASOPOT_s_ATqDmd is smaller than 0 3) ASOPOT_s_ATqDmd is smaller than ASOPOT_s_ATqAct 4) ASOPOT_s_ATqDmd is smaller than ATlrHiMaxIni 5) ASOPOTgradienttransition is True The output *ADF_ATlrHiDyn is equal to the maximum of *ATlrHiDyn and the sum of the input value *AGrdMaxDec multiplied by the cycle time VMMP_c_TiSmpl.and the minuimum of 0, ASOPOT_s_ATqAct, ATlrHiMaxIni and ATlrHiDyn_lastcycle. Raw{
"ID": "55147482",
"ASIL": " QM",
"Text": "IF [AND(1,2,3,4,5)]\n_x000D_1) *ATlrHiDyn is smaller than *ATlrHiDyn_lastcycle\n_x000D_2) ASOPOT_s_ATqDmd is smaller than 0\n_x000D_3) ASOPOT_s_ATqDmd is smaller than ASOPOT_s_ATqAct\n_x000D_4) ASOPOT_s_ATqDmd is smaller than ATlrHiMaxIni\n_x000D_5) ASOPOTgradienttransition is True\n_x000D_The output *ADF_ATlrHiDyn is equal to the\n_x000D_maximum of *ATlrHiDyn and the sum of the input value *AGrdMaxDec multiplied by the cycle time VMMP_c_TiSmpl.and the minuimum of 0, ASOPOT_s_ATqAct, ATlrHiMaxIni and ATlrHiDyn_lastcycle.",
"Type": "Pre Condition",
"Status": "Released",
"Summary": "",
"Relevant": "no",
"column_12": "",
"Foreign ID": "",
"Description": "IF [AND(1,2,3,4,5)]\n_x000D_1) *ATlrHiDyn is smaller than *ATlrHiDyn_lastcycle\n_x000D_2) ASOPOT_s_ATqDmd is smaller than 0\n_x000D_3) ASOPOT_s_ATqDmd is smaller than ASOPOT_s_ATqAct\n_x000D_4) ASOPOT_s_ATqDmd is smaller than ATlrHiMaxIni\n_x000D_5) ASOPOTgradienttransition is True\n_x000D_The output *ADF_ATlrHiDyn is equal to the\n_x000D_maximum of *ATlrHiDyn and the sum of the input value *AGrdMaxDec multiplied by the cycle time VMMP_c_TiSmpl.and the minuimum of 0, ASOPOT_s_ATqAct, ATlrHiMaxIni and ATlrHiDyn_lastcycle.",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} |
| 49 | 16653015 | Pre Condition | Released | no | False | type_not_target, relevance_filtered | IF [AND(1,OR(2,3,4))] 1) *ATlrHiDyn is smaller than *ATlrHiDyn_lastcycle 2) ASOPOT_s_ATqDmd is greater than 0 3) ASOPOT_s_ATqDmIF [AND(1,OR(2,3,4))] 1) *ATlrHiDyn is smaller than *ATlrHiDyn_lastcycle 2) ASOPOT_s_ATqDmd is greater than 0 3) ASOPOT_s_ATqDmd is greater than ASOPOT_s_ATqAct 4) ASOPOT_s_ATqDmd is greater than ATlrHiMaxIni THEN: The output *ADF_ATlrHiDyn is equal to the maximum of *ATlrHiDyn and the sum of the input value *AGrdMaxDec multiplied by the cycle time VMMP_c_TiSmpl.and the minimum of *ATlrHiDyn_lastcycle and the input ASOPOT_s_ATqDmd. Raw{
"ID": "16653015",
"ASIL": " QM",
"Text": "IF [AND(1,OR(2,3,4))]\n_x000D_1) *ATlrHiDyn is smaller than *ATlrHiDyn_lastcycle\n_x000D_2) ASOPOT_s_ATqDmd is greater than 0\n_x000D_3) ASOPOT_s_ATqDmd is greater than ASOPOT_s_ATqAct\n_x000D_4) ASOPOT_s_ATqDmd is greater than ATlrHiMaxIni\n_x000D_THEN: \n_x000D_The output *ADF_ATlrHiDyn is equal to the\n_x000D_maximum of *ATlrHiDyn and the sum of the input value *AGrdMaxDec multiplied by the cycle time VMMP_c_TiSmpl.and the minimum of *ATlrHiDyn_lastcycle and the input ASOPOT_s_ATqDmd.",
"Type": "Pre Condition",
"Status": "Released",
"Summary": "",
"Relevant": "no",
"column_12": "",
"Foreign ID": "1312977",
"Description": "IF [AND(1,OR(2,3,4))]\n_x000D_1) *ATlrHiDyn is smaller than *ATlrHiDyn_lastcycle\n_x000D_2) ASOPOT_s_ATqDmd is greater than 0\n_x000D_3) ASOPOT_s_ATqDmd is greater than ASOPOT_s_ATqAct\n_x000D_4) ASOPOT_s_ATqDmd is greater than ATlrHiMaxIni\n_x000D_THEN: \n_x000D_The output *ADF_ATlrHiDyn is equal to the\n_x000D_maximum of *ATlrHiDyn and the sum of the input value *AGrdMaxDec multiplied by the cycle time VMMP_c_TiSmpl.and the minimum of *ATlrHiDyn_lastcycle and the input ASOPOT_s_ATqDmd.",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} |
| 50 | 55150056 | Pre Condition | Released | no | False | type_not_target, relevance_filtered | IF [AND(1,5,OR(2,3,4))] 1) *ATlrHiDyn is smaller than *ATlrHiDyn_lastcycle 2) ASOPOT_s_ATqDmd is greater than 0 3) ASOPOT_s_ATqIF [AND(1,5,OR(2,3,4))] 1) *ATlrHiDyn is smaller than *ATlrHiDyn_lastcycle 2) ASOPOT_s_ATqDmd is greater than 0 3) ASOPOT_s_ATqDmd is greater than ASOPOT_s_ATqAct 4) ASOPOT_s_ATqDmd is greater than ATlrHiMaxIni 5) ASOPOTgradienttransition is True THEN: The output *ADF_ATlrHiDyn is equal to the maximum of *ATlrHiDyn and the sum of the input value *AGrdMaxDec multiplied by the cycle time VMMP_c_TiSmpl.and the minimum of *ATlrHiDyn_lastcycle and the input ASOPOT_s_ATqDmd. Raw{
"ID": "55150056",
"ASIL": " QM",
"Text": "IF [AND(1,5,OR(2,3,4))]\n_x000D_1) *ATlrHiDyn is smaller than *ATlrHiDyn_lastcycle\n_x000D_2) ASOPOT_s_ATqDmd is greater than 0\n_x000D_3) ASOPOT_s_ATqDmd is greater than ASOPOT_s_ATqAct\n_x000D_4) ASOPOT_s_ATqDmd is greater than ATlrHiMaxIni\n_x000D_5) ASOPOTgradienttransition is True\n_x000D_THEN: \n_x000D_The output *ADF_ATlrHiDyn is equal to the\n_x000D_maximum of *ATlrHiDyn and the sum of the input value *AGrdMaxDec multiplied by the cycle time VMMP_c_TiSmpl.and the minimum of *ATlrHiDyn_lastcycle and the input ASOPOT_s_ATqDmd.",
"Type": "Pre Condition",
"Status": "Released",
"Summary": "",
"Relevant": "no",
"column_12": "",
"Foreign ID": "",
"Description": "IF [AND(1,5,OR(2,3,4))]\n_x000D_1) *ATlrHiDyn is smaller than *ATlrHiDyn_lastcycle\n_x000D_2) ASOPOT_s_ATqDmd is greater than 0\n_x000D_3) ASOPOT_s_ATqDmd is greater than ASOPOT_s_ATqAct\n_x000D_4) ASOPOT_s_ATqDmd is greater than ATlrHiMaxIni\n_x000D_5) ASOPOTgradienttransition is True\n_x000D_THEN: \n_x000D_The output *ADF_ATlrHiDyn is equal to the\n_x000D_maximum of *ATlrHiDyn and the sum of the input value *AGrdMaxDec multiplied by the cycle time VMMP_c_TiSmpl.and the minimum of *ATlrHiDyn_lastcycle and the input ASOPOT_s_ATqDmd.",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} |
| 51 | 55150283 | Pre Condition | Released | no | False | type_not_target, relevance_filtered | IF [AND(1,2)] 1) *ATlrHiDyn is smaller than *ATlrHiDyn_lastcycle 2) ASOPOTgradienttransition is False THEN: The output *ADF_AIF [AND(1,2)] 1) *ATlrHiDyn is smaller than *ATlrHiDyn_lastcycle 2) ASOPOTgradienttransition is False THEN: The output *ADF_ATlrHiDyn is equal to the maximum of *ATlrHiDyn and the sum of the input value *AGrdMaxDec multiplied by the cycle time VMMP_c_TiSmpl.and *ATlrHiDyn_lastcycle. Raw{
"ID": "55150283",
"ASIL": " QM",
"Text": "IF [AND(1,2)]\n_x000D_1) *ATlrHiDyn is smaller than *ATlrHiDyn_lastcycle\n_x000D_2) ASOPOTgradienttransition is False\n_x000D_THEN: \n_x000D_The output *ADF_ATlrHiDyn is equal to the\n_x000D_maximum of *ATlrHiDyn and the sum of the input value *AGrdMaxDec multiplied by the cycle time VMMP_c_TiSmpl.and *ATlrHiDyn_lastcycle.",
"Type": "Pre Condition",
"Status": "Released",
"Summary": "",
"Relevant": "no",
"column_12": "",
"Foreign ID": "",
"Description": "IF [AND(1,2)]\n_x000D_1) *ATlrHiDyn is smaller than *ATlrHiDyn_lastcycle\n_x000D_2) ASOPOTgradienttransition is False\n_x000D_THEN: \n_x000D_The output *ADF_ATlrHiDyn is equal to the\n_x000D_maximum of *ATlrHiDyn and the sum of the input value *AGrdMaxDec multiplied by the cycle time VMMP_c_TiSmpl.and *ATlrHiDyn_lastcycle.",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} |
| 52 | 59373755 | Pre Condition | Released | no | False | type_not_target, relevance_filtered | IF [1] 1) Bit position VMMP_SINFCT_c_LgtCtl_IdxBitFldConfMdADmdSmth of signal ARBLLCSC_s_LgtCtl_BitFldConf is true THEN: TiInIF [1] 1) Bit position VMMP_SINFCT_c_LgtCtl_IdxBitFldConfMdADmdSmth of signal ARBLLCSC_s_LgtCtl_BitFldConf is true THEN: TiInvADmdGrdRamp is equal to VMMP_LOCADF_p_AGrdLim_TiInvADmdGrdRampCAPA ELSE: TiInvADmdGrdRamp is equal to VMMP_LOCADF_p_AGrdLim_TiInvADmdGrdRamp Raw{
"ID": "59373755",
"ASIL": " QM",
"Text": "IF [1] \n_x000D_1) Bit position VMMP_SINFCT_c_LgtCtl_IdxBitFldConfMdADmdSmth of signal ARBLLCSC_s_LgtCtl_BitFldConf is true\n_x000D_THEN: \n_x000D_TiInvADmdGrdRamp is equal to VMMP_LOCADF_p_AGrdLim_TiInvADmdGrdRampCAPA\n_x000D_ELSE:\n_x000D_TiInvADmdGrdRamp is equal to VMMP_LOCADF_p_AGrdLim_TiInvADmdGrdRamp",
"Type": "Pre Condition",
"Status": "Released",
"Summary": "threshold ramp",
"Relevant": "no",
"column_12": "",
"Foreign ID": "",
"Description": "IF [1] \n_x000D_1) Bit position VMMP_SINFCT_c_LgtCtl_IdxBitFldConfMdADmdSmth of signal ARBLLCSC_s_LgtCtl_BitFldConf is true\n_x000D_THEN: \n_x000D_TiInvADmdGrdRamp is equal to VMMP_LOCADF_p_AGrdLim_TiInvADmdGrdRampCAPA\n_x000D_ELSE:\n_x000D_TiInvADmdGrdRamp is equal to VMMP_LOCADF_p_AGrdLim_TiInvADmdGrdRamp",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} |
| 53 | 59373765 | Pre Condition | Released | no | False | type_not_target, relevance_filtered | IF [1] 1) Bit position VMMP_SINFCT_c_LgtCtl_IdxBitFldConfMdADmdSmth of signal ARBLLCSC_s_LgtCtl_BitFldConf is true THEN: ADmdIF [1] 1) Bit position VMMP_SINFCT_c_LgtCtl_IdxBitFldConfMdADmdSmth of signal ARBLLCSC_s_LgtCtl_BitFldConf is true THEN: ADmdDifTh is equal to VMMP_LOCADF_p_AGrdLim_ADmdDifThCAPA ELSE: ADmdDifTh is equal to VMMP_LOCADF_p_AGrdLim_ADmdDifTh Raw{
"ID": "59373765",
"ASIL": " QM",
"Text": "IF [1] \n_x000D_1) Bit position VMMP_SINFCT_c_LgtCtl_IdxBitFldConfMdADmdSmth of signal ARBLLCSC_s_LgtCtl_BitFldConf is true\n_x000D_THEN: \n_x000D_ADmdDifTh is equal to VMMP_LOCADF_p_AGrdLim_ADmdDifThCAPA\n_x000D_ELSE:\n_x000D_ADmdDifTh is equal to VMMP_LOCADF_p_AGrdLim_ADmdDifTh",
"Type": "Pre Condition",
"Status": "Released",
"Summary": "threshold ramp",
"Relevant": "no",
"column_12": "",
"Foreign ID": "",
"Description": "IF [1] \n_x000D_1) Bit position VMMP_SINFCT_c_LgtCtl_IdxBitFldConfMdADmdSmth of signal ARBLLCSC_s_LgtCtl_BitFldConf is true\n_x000D_THEN: \n_x000D_ADmdDifTh is equal to VMMP_LOCADF_p_AGrdLim_ADmdDifThCAPA\n_x000D_ELSE:\n_x000D_ADmdDifTh is equal to VMMP_LOCADF_p_AGrdLim_ADmdDifTh",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} |
| 54 | 36862411 | Folder | no | False | type_not_target, status_filtered, relevance_filtered | limited gradient AGrdMaxInclimited gradient AGrdMaxInc Raw{
"ID": "36862411",
"ASIL": " ",
"Text": "limited gradient AGrdMaxInc",
"Type": "Folder",
"Status": "",
"Summary": "limited gradient AGrdMaxInc",
"Relevant": "no",
"column_12": "",
"Foreign ID": "",
"Description": "",
"Vehicle Launch": "",
"Vehicle Platform": ""
} | |
| 55 | 36862571 | Information | no | False | type_not_target, status_filtered, relevance_filtered | The purpose of this function is to limitt the acceleration demand increasing gradient, in which the acceleration demand forming atThe purpose of this function is to limitt the acceleration demand increasing gradient, in which the acceleration demand forming at small acceleration demand change can be smoother and avoid stepwise progression. Therefore the gradient of the external function *ADmd will be formed with limited maximal gradients. This is described in this chapter and will be used further on. Inputs: *ADmd *GrdMaxInc *ADmd_lastcycle Output: limited gradient *ADF_AGrdMaxInc Raw{
"ID": "36862571",
"ASIL": " ",
"Text": "The purpose of this function is to limitt the acceleration demand increasing gradient, in which the acceleration demand forming at small acceleration demand change can be smoother and avoid stepwise progression. Therefore the gradient of the external function *ADmd will be formed with limited maximal gradients. This is described in this chapter and will be used further on.\n_x000D_ \n_x000D_Inputs:\n_x000D_*ADmd \n_x000D_*GrdMaxInc \n_x000D_*ADmd_lastcycle\n_x000D_Output:\n_x000D_limited gradient *ADF_AGrdMaxInc",
"Type": "Information",
"Status": "",
"Summary": "The main purpose of this module is to form an acceleration demand~, which the control can handle. Therefore the acceleration demand of the external function *ADmd will be formed with maximal gradients. This is described in this chapter and will be used ..",
"Relevant": "no",
"column_12": "",
"Foreign ID": "",
"Description": "The purpose of this function is to limitt the acceleration demand increasing gradient, in which the acceleration demand forming at small acceleration demand change can be smoother and avoid stepwise progression. Therefore the gradient of the external function *ADmd will be formed with limited maximal gradients. This is described in this chapter and will be used further on.\n_x000D_ \n_x000D_Inputs:\n_x000D_*ADmd \n_x000D_*GrdMaxInc \n_x000D_*ADmd_lastcycle\n_x000D_Output:\n_x000D_limited gradient *ADF_AGrdMaxInc",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} | |
| 56 | 36887069 | Pre Condition | Released | no | False | type_not_target, relevance_filtered | For the first calculation cycle (start of simulation or processor startup) **ADmd_lastcycle is 0 (zero).For the first calculation cycle (start of simulation or processor startup) **ADmd_lastcycle is 0 (zero). Raw{
"ID": "36887069",
"ASIL": " QM",
"Text": "For the first calculation cycle (start of simulation or processor startup) **ADmd_lastcycle is 0 (zero).",
"Type": "Pre Condition",
"Status": "Released",
"Summary": "",
"Relevant": "no",
"column_12": "",
"Foreign ID": "",
"Description": "For the first calculation cycle (start of simulation or processor startup) **ADmd_lastcycle is 0 (zero).",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} |
| 57 | 36887197 | Pre Condition | Released | no | False | type_not_target, relevance_filtered | IF [1] 1) *ADmd has not changed its value from the previous to this time step THEN: a new target time for the ramp is defined:IF [1] 1) *ADmd has not changed its value from the previous to this time step THEN: a new target time for the ramp is defined: 1/TiInvADmdGrdRamp from this point of time. Raw{
"ID": "36887197",
"ASIL": " QM",
"Text": "IF [1]\n_x000D_1) *ADmd has not changed its value from the previous to this time step\n_x000D_THEN:\n_x000D_a new target time for the ramp is defined: 1/TiInvADmdGrdRamp from this point of time.",
"Type": "Pre Condition",
"Status": "Released",
"Summary": "threshold ramp: target time",
"Relevant": "no",
"column_12": "",
"Foreign ID": "",
"Description": "IF [1]\n_x000D_1) *ADmd has not changed its value from the previous to this time step\n_x000D_THEN:\n_x000D_a new target time for the ramp is defined: 1/TiInvADmdGrdRamp from this point of time.",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} |
| 58 | 37712851 | Pre Condition | Released | no | False | type_not_target, relevance_filtered | IF [1] 1) *ADmd has not changed its value from the previous to this time step THEN: threshold ramp is equal to the sum ofIF [1] 1) *ADmd has not changed its value from the previous to this time step THEN: threshold ramp is equal to the sum of *ADmd-ADmdDifTh and ADmdDifTh*TiInvADmdGrdRamp*VMMP_c_TiSmpl ELSEIF [1] 1) target time is reached THEN: threshold ramp is equal to *ADmd ELSE: threshold ramp is equal to the sum of threshold ramp of the previous time step and ADmdDifTh*TiInvADmdGrdRamp*VMMP_c_TiSmpl Info: this defines a linear increasing threshold ramp starting at *ADmd-ADmdDifTh and ending at *ADmd when the target time is reached shifted by one time step. Raw{
"ID": "37712851",
"ASIL": " QM",
"Text": "IF [1] \n_x000D_1) \n_x000D_*ADmd\n_x000D_ has not changed its value from the previous to this time step\n_x000D_THEN: \n_x000D_threshold ramp is equal to the sum of *ADmd-ADmdDifTh and ADmdDifTh*TiInvADmdGrdRamp*VMMP_c_TiSmpl\n_x000D_ELSEIF [1] \n_x000D_1) target time is reached\n_x000D_THEN:\n_x000D_threshold ramp is equal to *ADmd\n_x000D_ELSE:\n_x000D_threshold ramp is equal to the sum of threshold ramp of the previous time step and ADmdDifTh*TiInvADmdGrdRamp*VMMP_c_TiSmpl\n_x000D_ \n_x000D_ \n_x000D_Info: this defines a linear increasing threshold ramp starting at *ADmd-ADmdDifTh and ending at *ADmd when the target time is reached shifted by one time step.",
"Type": "Pre Condition",
"Status": "Released",
"Summary": "threshold ramp",
"Relevant": "no",
"column_12": "",
"Foreign ID": "",
"Description": "IF [1] \n_x000D_1) \n_x000D_*ADmd\n_x000D_ has not changed its value from the previous to this time step\n_x000D_THEN: \n_x000D_threshold ramp is equal to the sum of *ADmd-ADmdDifTh and ADmdDifTh*TiInvADmdGrdRamp*VMMP_c_TiSmpl\n_x000D_ELSEIF [1] \n_x000D_1) target time is reached\n_x000D_THEN:\n_x000D_threshold ramp is equal to *ADmd\n_x000D_ELSE:\n_x000D_threshold ramp is equal to the sum of threshold ramp of the previous time step and ADmdDifTh*TiInvADmdGrdRamp*VMMP_c_TiSmpl\n_x000D_ \n_x000D_ \n_x000D_Info: this defines a linear increasing threshold ramp starting at *ADmd-ADmdDifTh and ending at *ADmd when the target time is reached shifted by one time step.",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} |
| 59 | 36887449 | Pre Condition | Released | no | False | type_not_target, relevance_filtered | GrdTotADmdDif is defined as the difference of *ADmd and *ADmd_lastcycle which is then divided by the remaining time untill theGrdTotADmdDif is defined as the difference of *ADmd and *ADmd_lastcycle which is then divided by the remaining time untill the target time is reached. Raw{
"ID": "36887449",
"ASIL": " QM",
"Text": "GrdTotADmdDif is defined as the difference of *ADmd \n_x000D_and *ADmd_lastcycle \n_x000D_which is then divided by the remaining time untill the target time \n_x000D_is reached.",
"Type": "Pre Condition",
"Status": "Released",
"Summary": "Gradient till target time GrdTotADmdDif",
"Relevant": "no",
"column_12": "",
"Foreign ID": "",
"Description": "GrdTotADmdDif is defined as the difference of *ADmd \n_x000D_and *ADmd_lastcycle \n_x000D_which is then divided by the remaining time untill the target time \n_x000D_is reached.",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} |
| 60 | 37712852 | Pre Condition | Released | no | False | type_not_target, relevance_filtered | GrdInterStep is defined as the difference of the threshold ramp and *ADmd_lastcycle which is then divided by VMMP_c_TiSmpl.GrdInterStep is defined as the difference of the threshold ramp and *ADmd_lastcycle which is then divided by VMMP_c_TiSmpl. Raw{
"ID": "37712852",
"ASIL": " QM",
"Text": "GrdInterStep is defined as the difference of the threshold ramp and *ADmd_lastcycle which is then divided by VMMP_c_TiSmpl.",
"Type": "Pre Condition",
"Status": "Released",
"Summary": "One step gradient to threshold ramp GrdInterStep",
"Relevant": "no",
"column_12": "",
"Foreign ID": "",
"Description": "GrdInterStep is defined as the difference of the threshold ramp and *ADmd_lastcycle which is then divided by VMMP_c_TiSmpl.",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} |
| 61 | 36887568 | Pre Condition | Released | no | False | type_not_target, relevance_filtered | IF[OR(1,2,3,AND(4,5),AND(4,6))] 1) VMMP_LOCADF_p_AGrdLim_SwtAGrdMaxLimPerm is false 2) the target time has passed 3) the differIF[OR(1,2,3,AND(4,5),AND(4,6))] 1) VMMP_LOCADF_p_AGrdLim_SwtAGrdMaxLimPerm is false 2) the target time has passed 3) the difference of *ADmd and *ADmd_lastcycle is negative 4) VMMP_LOCADF_p_AGrdLim_SwtDeacAGrdMaxLim is false 5) LOCDC_s_LgtCtlV_StAcv is equal to VMMP_LOCDC_c_StAcvDCtl 6) LOCDL_s_LgtLimA_FlgAcv is true THEN: The output limited gradient *ADF_AGrdMaxInc is equal to *GrdMaxInc ELSE: The output limited gradient *ADF_AGrdMaxInc is equal to MIN(*GrdMaxInc,MAX(GrdInterStep , GrdTotADmdDif ) Raw{
"ID": "36887568",
"ASIL": " QM",
"Text": "IF[OR(1,2,3,AND(4,5),AND(4,6))]\n_x000D_1) VMMP_LOCADF_p_AGrdLim_SwtAGrdMaxLimPerm is false\n_x000D_2) the target time has passed\n_x000D_3) the difference of *ADmd and *ADmd_lastcycle is negative\n_x000D_4) VMMP_LOCADF_p_AGrdLim_SwtDeacAGrdMaxLim is false\n_x000D_5) LOCDC_s_LgtCtlV_StAcv is equal to VMMP_LOCDC_c_StAcvDCtl\n_x000D_6) LOCDL_s_LgtLimA_FlgAcv is true\n_x000D_THEN:\n_x000D_The output limited gradient *ADF_AGrdMaxInc is equal to *GrdMaxInc\n_x000D_ELSE:\n_x000D_The output limited gradient *ADF_AGrdMaxInc \n_x000D_is equal to MIN(*GrdMaxInc,MAX(GrdInterStep ,\n_x000D_GrdTotADmdDif )",
"Type": "Pre Condition",
"Status": "Released",
"Summary": "Calculation of the limited gradient ADF_AGrdMaxInc",
"Relevant": "no",
"column_12": "",
"Foreign ID": "",
"Description": "IF[OR(1,2,3,AND(4,5),AND(4,6))]\n_x000D_1) VMMP_LOCADF_p_AGrdLim_SwtAGrdMaxLimPerm is false\n_x000D_2) the target time has passed\n_x000D_3) the difference of *ADmd and *ADmd_lastcycle is negative\n_x000D_4) VMMP_LOCADF_p_AGrdLim_SwtDeacAGrdMaxLim is false\n_x000D_5) LOCDC_s_LgtCtlV_StAcv is equal to VMMP_LOCDC_c_StAcvDCtl\n_x000D_6) LOCDL_s_LgtLimA_FlgAcv is true\n_x000D_THEN:\n_x000D_The output limited gradient *ADF_AGrdMaxInc is equal to *GrdMaxInc\n_x000D_ELSE:\n_x000D_The output limited gradient *ADF_AGrdMaxInc \n_x000D_is equal to MIN(*GrdMaxInc,MAX(GrdInterStep ,\n_x000D_GrdTotADmdDif )",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} |
| 62 | 36887854 | Folder | no | False | type_not_target, status_filtered, relevance_filtered | limited gradient AGrdMaxDeclimited gradient AGrdMaxDec Raw{
"ID": "36887854",
"ASIL": " ",
"Text": "limited gradient AGrdMaxDec",
"Type": "Folder",
"Status": "",
"Summary": "limited gradient AGrdMaxDec",
"Relevant": "no",
"column_12": "",
"Foreign ID": "",
"Description": "",
"Vehicle Launch": "",
"Vehicle Platform": ""
} | |
| 63 | 36887855 | Information | no | False | type_not_target, status_filtered, relevance_filtered | The purpose of this function is to limitt the acceleration demand decreasing gradient, in which the acceleration demand forming atThe purpose of this function is to limitt the acceleration demand decreasing gradient, in which the acceleration demand forming at small acceleration demand change can be smoother and avoid stepwise progression. Therefore the gradient of the external function *ADmd will be formed with limited maximal gradients. This is described in this chapter and will be used further on. Inputs: *ADmd *GrdMaxDec *ADmd_lastcycle Output: limited gradient *ADF_AGrdMaxDec Raw{
"ID": "36887855",
"ASIL": " ",
"Text": "The purpose of this function is to limitt the acceleration demand decreasing gradient, in which the acceleration demand forming at small acceleration demand change can be smoother and avoid stepwise progression. Therefore the gradient of the external function *ADmd will be formed with limited maximal gradients. This is described in this chapter and will be used further on.\n_x000D_ \n_x000D_Inputs:\n_x000D_*ADmd \n_x000D_*GrdMaxDec \n_x000D_*ADmd_lastcycle\n_x000D_Output:\n_x000D_limited gradient *ADF_AGrdMaxDec",
"Type": "Information",
"Status": "",
"Summary": "The main purpose of this module is to form an acceleration demand~, which the control can handle. Therefore the acceleration demand of the external function *ADmd will be formed with maximal gradients. This is described in this chapter and will be used ..",
"Relevant": "no",
"column_12": "",
"Foreign ID": "",
"Description": "The purpose of this function is to limitt the acceleration demand decreasing gradient, in which the acceleration demand forming at small acceleration demand change can be smoother and avoid stepwise progression. Therefore the gradient of the external function *ADmd will be formed with limited maximal gradients. This is described in this chapter and will be used further on.\n_x000D_ \n_x000D_Inputs:\n_x000D_*ADmd \n_x000D_*GrdMaxDec \n_x000D_*ADmd_lastcycle\n_x000D_Output:\n_x000D_limited gradient *ADF_AGrdMaxDec",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} | |
| 64 | 36887856 | Pre Condition | Released | no | False | type_not_target, relevance_filtered | For the first calculation cycle (start of simulation or processor startup) **ADmd_lastcycle is 0 (zero).For the first calculation cycle (start of simulation or processor startup) **ADmd_lastcycle is 0 (zero). Raw{
"ID": "36887856",
"ASIL": " QM",
"Text": "For the first calculation cycle (start of simulation or processor startup) **ADmd_lastcycle is 0 (zero).",
"Type": "Pre Condition",
"Status": "Released",
"Summary": "",
"Relevant": "no",
"column_12": "",
"Foreign ID": "",
"Description": "For the first calculation cycle (start of simulation or processor startup) **ADmd_lastcycle is 0 (zero).",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} |
| 65 | 36887857 | Pre Condition | Released | no | False | type_not_target, relevance_filtered | IF [1] 1) *ADmd has not changed its value from the previous to this time step THEN: a new target time for the ramp is defiIF [1] 1) *ADmd has not changed its value from the previous to this time step THEN: a new target time for the ramp is defined: 1/TiInvADmdGrdRamp from this point of time. Raw{
"ID": "36887857",
"ASIL": " QM",
"Text": "IF [1] \n_x000D_1) \n_x000D_*ADmd\n_x000D_ \n_x000D_has not changed its value from the previous to this time step\n_x000D_THEN: \n_x000D_a new target time for the ramp is defined: 1/TiInvADmdGrdRamp from this point of time.",
"Type": "Pre Condition",
"Status": "Released",
"Summary": "threshold ramp: target time",
"Relevant": "no",
"column_12": "",
"Foreign ID": "",
"Description": "IF [1] \n_x000D_1) \n_x000D_*ADmd\n_x000D_ \n_x000D_has not changed its value from the previous to this time step\n_x000D_THEN: \n_x000D_a new target time for the ramp is defined: 1/TiInvADmdGrdRamp from this point of time.",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} |
| 66 | 37579903 | Pre Condition | Released | no | False | type_not_target, relevance_filtered | IF [1] 1) *ADmd has not changed its value from the previous to this time step THEN: threshold ramp is equal to the differencIF [1] 1) *ADmd has not changed its value from the previous to this time step THEN: threshold ramp is equal to the difference of *ADmd+ADmdDifTh and ADmdDifTh*TiInvADmdGrdRamp*VMMP_c_TiSmpl ELSEIF [1] 1) target time is reached THEN: threshold ramp is equal to *ADmd ELSE: threshold ramp is equal to the difference of threshold ramp of the previous time step and ADmdDifTh*TiInvADmdGrdRamp*VMMP_c_TiSmpl Info: this defines a linear increasing threshold ramp starting at *ADmd+ADmdDifTh and ending at *ADmd when the target time is reached shifted by one time step. Raw{
"ID": "37579903",
"ASIL": " QM",
"Text": "IF [1]\n_x000D_1) \n_x000D_*ADmd\n_x000D_ \n_x000D_has not changed its value from the previous to this time step\n_x000D_THEN:\n_x000D_threshold ramp is equal to the difference of *ADmd+ADmdDifTh and ADmdDifTh*TiInvADmdGrdRamp*VMMP_c_TiSmpl\n_x000D_ELSEIF [1]\n_x000D_1) target time is reached\n_x000D_THEN:\n_x000D_threshold ramp is equal to *ADmd\n_x000D_ELSE:\n_x000D_threshold ramp is equal to the difference of threshold ramp of the previous time step and ADmdDifTh*TiInvADmdGrdRamp*VMMP_c_TiSmpl\n_x000D_ \n_x000D_Info: this defines a linear increasing threshold ramp starting at *ADmd+ADmdDifTh and ending at *ADmd when the target time is reached shifted by one time step.",
"Type": "Pre Condition",
"Status": "Released",
"Summary": "threshold ramp",
"Relevant": "no",
"column_12": "",
"Foreign ID": "",
"Description": "IF [1]\n_x000D_1) \n_x000D_*ADmd\n_x000D_ \n_x000D_has not changed its value from the previous to this time step\n_x000D_THEN:\n_x000D_threshold ramp is equal to the difference of *ADmd+ADmdDifTh and ADmdDifTh*TiInvADmdGrdRamp*VMMP_c_TiSmpl\n_x000D_ELSEIF [1]\n_x000D_1) target time is reached\n_x000D_THEN:\n_x000D_threshold ramp is equal to *ADmd\n_x000D_ELSE:\n_x000D_threshold ramp is equal to the difference of threshold ramp of the previous time step and ADmdDifTh*TiInvADmdGrdRamp*VMMP_c_TiSmpl\n_x000D_ \n_x000D_Info: this defines a linear increasing threshold ramp starting at *ADmd+ADmdDifTh and ending at *ADmd when the target time is reached shifted by one time step.",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} |
| 67 | 36887858 | Pre Condition | Released | no | False | type_not_target, relevance_filtered | GrdTotADmdDif is defined as the difference of *ADmd and *ADmd_lastcycle which is then divided by the remaining time untill the tarGrdTotADmdDif is defined as the difference of *ADmd and *ADmd_lastcycle which is then divided by the remaining time untill the target time is reached. Raw{
"ID": "36887858",
"ASIL": " QM",
"Text": "GrdTotADmdDif is defined as the difference of *ADmd and *ADmd_lastcycle which is then divided by the remaining time untill the target time is reached.",
"Type": "Pre Condition",
"Status": "Released",
"Summary": "Gradient till target time GrdTotADmdDif",
"Relevant": "no",
"column_12": "",
"Foreign ID": "",
"Description": "GrdTotADmdDif is defined as the difference of *ADmd and *ADmd_lastcycle which is then divided by the remaining time untill the target time is reached.",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} |
| 68 | 37580190 | Pre Condition | Released | no | False | type_not_target, relevance_filtered | GrdInterStep is defined as the difference of the threshold ramp and *ADmd_lastcycle which is then divided by VMMP_c_TiSmpl.GrdInterStep is defined as the difference of the threshold ramp and *ADmd_lastcycle which is then divided by VMMP_c_TiSmpl. Raw{
"ID": "37580190",
"ASIL": " QM",
"Text": "GrdInterStep is defined as the difference of the threshold ramp and *ADmd_lastcycle which is then divided by VMMP_c_TiSmpl.",
"Type": "Pre Condition",
"Status": "Released",
"Summary": "One step gradient to threshold ramp GrdInterStep",
"Relevant": "no",
"column_12": "",
"Foreign ID": "",
"Description": "GrdInterStep is defined as the difference of the threshold ramp and *ADmd_lastcycle which is then divided by VMMP_c_TiSmpl.",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} |
| 69 | 36887859 | Pre Condition | Released | no | False | type_not_target, relevance_filtered | IF[OR(1,2,3,AND(4,5),AND(4,6))] 1) VMMP_LOCADF_p_AGrdLim_SwtAGrdMaxLimPerm is false 2) the target time has passed 3) the differIF[OR(1,2,3,AND(4,5),AND(4,6))] 1) VMMP_LOCADF_p_AGrdLim_SwtAGrdMaxLimPerm is false 2) the target time has passed 3) the difference of *ADmd and *ADmd_lastcycle is positive 4) VMMP_LOCADF_p_AGrdLim_SwtDeacAGrdMaxLim is false 5) LOCDC_s_LgtCtlV_StAcv is equal to VMMP_LOCDC_c_StAcvDCtl 6) LOCDL_s_LgtLimA_FlgAcv is true THEN: The output limited gradient *ADF_AGrdMaxDec is equal to *GrdMaxDec ELSE: The output limited gradient *ADF_AGrdMaxDec is equal to MAX(*GrdMaxDec,MIN(GrdInterStep , GrdTotADmdDif ) Raw{
"ID": "36887859",
"ASIL": " QM",
"Text": "IF[OR(1,2,3,AND(4,5),AND(4,6))]\n_x000D_1) VMMP_LOCADF_p_AGrdLim_SwtAGrdMaxLimPerm is false\n_x000D_2) the target time has passed\n_x000D_3) the difference of *ADmd and *ADmd_lastcycle is positive\n_x000D_4) VMMP_LOCADF_p_AGrdLim_SwtDeacAGrdMaxLim is false\n_x000D_5) LOCDC_s_LgtCtlV_StAcv is equal to VMMP_LOCDC_c_StAcvDCtl\n_x000D_6) LOCDL_s_LgtLimA_FlgAcv is true\n_x000D_THEN:\n_x000D_The output limited gradient *ADF_AGrdMaxDec is equal to *GrdMaxDec\n_x000D_ELSE: \n_x000D_The output limited gradient *ADF_AGrdMaxDec \n_x000D_is equal to MAX(*GrdMaxDec,MIN(GrdInterStep ,\n_x000D_GrdTotADmdDif )",
"Type": "Pre Condition",
"Status": "Released",
"Summary": "Calculation of the limited gradient ADF_AGrdMaxDec",
"Relevant": "no",
"column_12": "",
"Foreign ID": "",
"Description": "IF[OR(1,2,3,AND(4,5),AND(4,6))]\n_x000D_1) VMMP_LOCADF_p_AGrdLim_SwtAGrdMaxLimPerm is false\n_x000D_2) the target time has passed\n_x000D_3) the difference of *ADmd and *ADmd_lastcycle is positive\n_x000D_4) VMMP_LOCADF_p_AGrdLim_SwtDeacAGrdMaxLim is false\n_x000D_5) LOCDC_s_LgtCtlV_StAcv is equal to VMMP_LOCDC_c_StAcvDCtl\n_x000D_6) LOCDL_s_LgtLimA_FlgAcv is true\n_x000D_THEN:\n_x000D_The output limited gradient *ADF_AGrdMaxDec is equal to *GrdMaxDec\n_x000D_ELSE: \n_x000D_The output limited gradient *ADF_AGrdMaxDec \n_x000D_is equal to MAX(*GrdMaxDec,MIN(GrdInterStep ,\n_x000D_GrdTotADmdDif )",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} |
| 70 | 16653016 | Folder | no | False | type_not_target, status_filtered, relevance_filtered | LgtCtlALgtCtlA Raw{
"ID": "16653016",
"ASIL": " ",
"Text": "LgtCtlA",
"Type": "Folder",
"Status": "",
"Summary": "LgtCtlA",
"Relevant": "no",
"column_12": "",
"Foreign ID": "1218919",
"Description": "",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} | |
| 71 | 20198117 | Folder | no | False | type_not_target, status_filtered, relevance_filtered | Deceleration Only ModeDeceleration Only Mode Raw{
"ID": "20198117",
"ASIL": " ",
"Text": "Deceleration Only Mode",
"Type": "Folder",
"Status": "",
"Summary": "Deceleration Only Mode",
"Relevant": "no",
"column_12": "",
"Foreign ID": "",
"Description": "",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} | |
| 72 | 20198160 | Pre Condition | Released | no | False | type_not_target, relevance_filtered | IF[1] 1)LOCAA_s_LgtCtlA_MdDeceOnly is not equal to VMMP_LOC_c_LgtCtlA_MdDeceOnlyDecOnlyMd THEN: LOCADF_m_LgtCtlA_ADmd is equalIF[1] 1)LOCAA_s_LgtCtlA_MdDeceOnly is not equal to VMMP_LOC_c_LgtCtlA_MdDeceOnlyDecOnlyMd THEN: LOCADF_m_LgtCtlA_ADmd is equal to LOCAA_s_LgtCtlA_ADmd ESLEIF[1] 1)VMMP_LOC_p_SwtDeceToDrg is true THEN: LOCADF_m_LgtCtlA_ADmd is equal to MIN(LOCAA_s_LgtCtlA_ADmd,DSOPRE_s_DrvPed_ADrg) ESLE: LOCADF_m_LgtCtlA_ADmd is equal to MIN(LOCAA_s_LgtCtlA_ADmd,ASOPOT_s_ANeutTh) Raw{
"ID": "20198160",
"ASIL": " ",
"Text": "IF[1]\n_x000D_1)LOCAA_s_LgtCtlA_MdDeceOnly is not equal to VMMP_LOC_c_LgtCtlA_MdDeceOnlyDecOnlyMd\n_x000D_THEN:\n_x000D_LOCADF_m_LgtCtlA_ADmd is equal to LOCAA_s_LgtCtlA_ADmd\n_x000D_ESLEIF[1]\n_x000D_1)VMMP_LOC_p_SwtDeceToDrg is true\n_x000D_THEN:\n_x000D_LOCADF_m_LgtCtlA_ADmd is equal to MIN(LOCAA_s_LgtCtlA_ADmd,DSOPRE_s_DrvPed_ADrg)\n_x000D_ESLE:\n_x000D_LOCADF_m_LgtCtlA_ADmd is equal to MIN(LOCAA_s_LgtCtlA_ADmd,ASOPOT_s_ANeutTh)",
"Type": "Pre Condition",
"Status": "Released",
"Summary": "",
"Relevant": "no",
"column_12": "",
"Foreign ID": "",
"Description": "IF[1]\n_x000D_1)LOCAA_s_LgtCtlA_MdDeceOnly is not equal to VMMP_LOC_c_LgtCtlA_MdDeceOnlyDecOnlyMd\n_x000D_THEN:\n_x000D_LOCADF_m_LgtCtlA_ADmd is equal to LOCAA_s_LgtCtlA_ADmd\n_x000D_ESLEIF[1]\n_x000D_1)VMMP_LOC_p_SwtDeceToDrg is true\n_x000D_THEN:\n_x000D_LOCADF_m_LgtCtlA_ADmd is equal to MIN(LOCAA_s_LgtCtlA_ADmd,DSOPRE_s_DrvPed_ADrg)\n_x000D_ESLE:\n_x000D_LOCADF_m_LgtCtlA_ADmd is equal to MIN(LOCAA_s_LgtCtlA_ADmd,ASOPOT_s_ANeutTh)",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} |
| 73 | 20198288 | Functional | Released | yes | True | IF[AND(1,OR(AND(2,3),AND(4,5)))] 1) LOCAA_s_LgtCtlA_MdDeceOnly is equal to VMMP_LOC_c_LgtCtlA_MdDeceOnlyDecOnlyMd 2) VMMP_LOC_p_IF[AND(1,OR(AND(2,3),AND(4,5)))] 1) LOCAA_s_LgtCtlA_MdDeceOnly is equal to VMMP_LOC_c_LgtCtlA_MdDeceOnlyDecOnlyMd 2) VMMP_LOC_p_SwtDeceToDrg is true 3) *ADF_ADmd is smaller than MIN(LOCAA_s_LgtCtlA_ADmd,DSOPRE_s_DrvPed_ADrg) 4) VMMP_LOC_p_SwtDeceToDrg is false 5) *ADF_ADmd is smaller than MIN(LOCAA_s_LgtCtlA_ADmd,ASOPOT_s_ANeutTh) THEN: LOCADF_s_LgtCtlA_FlgDeceOnlyRampEnd is true. ELSE: LOCADF_s_LgtCtlA_FlgDeceOnlyRampEnd is false. Raw{
"ID": "20198288",
"ASIL": " QM",
"Text": "IF[AND(1,OR(AND(2,3),AND(4,5)))]\n_x000D_1) LOCAA_s_LgtCtlA_MdDeceOnly is equal to VMMP_LOC_c_LgtCtlA_MdDeceOnlyDecOnlyMd\n_x000D_2) VMMP_LOC_p_SwtDeceToDrg is true\n_x000D_3) *ADF_ADmd is smaller than MIN(LOCAA_s_LgtCtlA_ADmd,DSOPRE_s_DrvPed_ADrg)\n_x000D_4) VMMP_LOC_p_SwtDeceToDrg is false\n_x000D_5) *ADF_ADmd is smaller than MIN(LOCAA_s_LgtCtlA_ADmd,ASOPOT_s_ANeutTh)\n_x000D_THEN:\n_x000D_LOCADF_s_LgtCtlA_FlgDeceOnlyRampEnd is true.\n_x000D_ELSE:\n_x000D_LOCADF_s_LgtCtlA_FlgDeceOnlyRampEnd is false.",
"Type": "Functional",
"Status": "Released",
"Summary": "",
"Relevant": "yes",
"column_12": "",
"Foreign ID": "",
"Description": "IF[AND(1,OR(AND(2,3),AND(4,5)))]\n_x000D_1) LOCAA_s_LgtCtlA_MdDeceOnly is equal to VMMP_LOC_c_LgtCtlA_MdDeceOnlyDecOnlyMd\n_x000D_2) VMMP_LOC_p_SwtDeceToDrg is true\n_x000D_3) *ADF_ADmd is smaller than MIN(LOCAA_s_LgtCtlA_ADmd,DSOPRE_s_DrvPed_ADrg)\n_x000D_4) VMMP_LOC_p_SwtDeceToDrg is false\n_x000D_5) *ADF_ADmd is smaller than MIN(LOCAA_s_LgtCtlA_ADmd,ASOPOT_s_ANeutTh)\n_x000D_THEN:\n_x000D_LOCADF_s_LgtCtlA_FlgDeceOnlyRampEnd is true.\n_x000D_ELSE:\n_x000D_LOCADF_s_LgtCtlA_FlgDeceOnlyRampEnd is false.",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} | |
| 74 | 16653017 | Folder | no | False | type_not_target, status_filtered, relevance_filtered | Gradient_selection_CtlGradient_selection_Ctl Raw{
"ID": "16653017",
"ASIL": " ",
"Text": "Gradient_selection_Ctl",
"Type": "Folder",
"Status": "",
"Summary": "Gradient_selection_Ctl",
"Relevant": "no",
"column_12": "",
"Foreign ID": "1218925",
"Description": "",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} | |
| 75 | 16653018 | Information | no | False | type_not_target, status_filtered, relevance_filtered | The gradients for the demand forming can vary depending on LOCAA_s_LgtCtlA_MdTarDyn and LOCAA_s_LgtLimA_MdTarDyn. Because the sameThe gradients for the demand forming can vary depending on LOCAA_s_LgtCtlA_MdTarDyn and LOCAA_s_LgtLimA_MdTarDyn. Because the same switched gradients are used in many requirements, the mechanism is described only in this chapter and is valid in sub-chapter LgtCtlA. Raw{
"ID": "16653018",
"ASIL": " ",
"Text": "The gradients for the demand forming can vary depending on LOCAA_s_LgtCtlA_MdTarDyn and LOCAA_s_LgtLimA_MdTarDyn. Because the same switched gradients are used in many requirements, the mechanism is described only in this chapter and is valid in sub-chapter LgtCtlA.",
"Type": "Information",
"Status": "",
"Summary": "",
"Relevant": "no",
"column_12": "",
"Foreign ID": "1218934",
"Description": "The gradients for the demand forming can vary depending on LOCAA_s_LgtCtlA_MdTarDyn and LOCAA_s_LgtLimA_MdTarDyn. Because the same switched gradients are used in many requirements, the mechanism is described only in this chapter and is valid in sub-chapter LgtCtlA.",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} | |
| 76 | 48927570 | Pre Condition | Released | no | False | type_not_target, relevance_filtered | IF AND[1,2] 1) ASOTA_s_TqWhlBrk_TqAct is greater than 0.01 2) ARBLLCSC_s_LgtCtl_StAcv is equal to VMMP_ARBLLCSC_c_LgtCtl_StAcvTrIF AND[1,2] 1) ASOTA_s_TqWhlBrk_TqAct is greater than 0.01 2) ARBLLCSC_s_LgtCtl_StAcv is equal to VMMP_ARBLLCSC_c_LgtCtl_StAcvTrjCtl THEN: LgtCtlA_AGrdMaxDecTrj is equal to LOCAA_s_LgtCtlA_AGrdMaxDec downwards limited to the output of the 2D interpolation parameter with px =VMMP_LOCADF_px_AGrdMaxDec_ACtlDmdDyn, py = VMMP_LOCADF_py_AGrdMaxDec_VCtlLgtVehCor, p2= VMMP_LOCADF_p2_LgtCtlA_ACtlGrdMaxDecLim and the x-input value is the difference between LOCAA_s_LgtCtlA_ADmd and previous value of LOCADF_s_LgtCtlA_ADmd, the y-input value is VSOEM_s_VLgtVehCor ELSE: LgtCtlA_AGrdMaxDecTrj is equal to LOCAA_s_LgtCtlA_AGrdMaxDec Raw{
"ID": "48927570",
"ASIL": " QM",
"Text": "IF AND[1,2]\n_x000D_1) ASOTA_s_TqWhlBrk_TqAct is greater than 0.01\n_x000D_2) ARBLLCSC_s_LgtCtl_StAcv is equal to VMMP_ARBLLCSC_c_LgtCtl_StAcvTrjCtl\n_x000D_THEN: \n_x000D_\n_x000D_LgtCtlA_AGrdMaxDecTrj \n_x000D_is equal to \n_x000D_LOCAA_s_LgtCtlA_AGrdMaxDec downwards limited to the output of the 2D interpolation parameter with\n_x000D_px =VMMP_LOCADF_px_AGrdMaxDec_ACtlDmdDyn,\n_x000D_py = VMMP_LOCADF_py_AGrdMaxDec_VCtlLgtVehCor,\n_x000D_p2= VMMP_LOCADF_p2_LgtCtlA_ACtlGrdMaxDecLim\n_x000D_and the x-input value is the difference between LOCAA_s_LgtCtlA_ADmd and previous value of LOCADF_s_LgtCtlA_ADmd,\n_x000D_the y-input value is VSOEM_s_VLgtVehCor\n_x000D_ELSE:\n_x000D_LgtCtlA_AGrdMaxDecTrj is equal to LOCAA_s_LgtCtlA_AGrdMaxDec",
"Type": "Pre Condition",
"Status": "Released",
"Summary": "",
"Relevant": "no",
"column_12": "",
"Foreign ID": "",
"Description": "IF AND[1,2]\n_x000D_1) ASOTA_s_TqWhlBrk_TqAct is greater than 0.01\n_x000D_2) ARBLLCSC_s_LgtCtl_StAcv is equal to VMMP_ARBLLCSC_c_LgtCtl_StAcvTrjCtl\n_x000D_THEN: \n_x000D_\n_x000D_LgtCtlA_AGrdMaxDecTrj \n_x000D_is equal to \n_x000D_LOCAA_s_LgtCtlA_AGrdMaxDec downwards limited to the output of the 2D interpolation parameter with\n_x000D_px =VMMP_LOCADF_px_AGrdMaxDec_ACtlDmdDyn,\n_x000D_py = VMMP_LOCADF_py_AGrdMaxDec_VCtlLgtVehCor,\n_x000D_p2= VMMP_LOCADF_p2_LgtCtlA_ACtlGrdMaxDecLim\n_x000D_and the x-input value is the difference between LOCAA_s_LgtCtlA_ADmd and previous value of LOCADF_s_LgtCtlA_ADmd,\n_x000D_the y-input value is VSOEM_s_VLgtVehCor\n_x000D_ELSE:\n_x000D_LgtCtlA_AGrdMaxDecTrj is equal to LOCAA_s_LgtCtlA_AGrdMaxDec",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} |
| 77 | 55046879 | Pre Condition | Released | no | False | type_not_target, relevance_filtered | IF OR[AND[1,2,3,4],AND[1,2,5]] 1) ASOTA_s_TqWhlBrk_TqAct is greater than 0.01 2) ARBLLCSC_s_LgtCtl_StAcv is equal to VMMP_ARBLLIF OR[AND[1,2,3,4],AND[1,2,5]] 1) ASOTA_s_TqWhlBrk_TqAct is greater than 0.01 2) ARBLLCSC_s_LgtCtl_StAcv is equal to VMMP_ARBLLCSC_c_LgtCtl_StAcvTrjCtl 3) LOCDC_s_LgtCtlV_StAcv is not equal to VMMP_LOCDC_c_StAcvDCtl 4) LOCDL_s_LgtLimA_FlgAcv is false 5) VMMP_LOCADF_p_AGrdLim_SwtDeacAGrdMaxLim is true THEN: LgtCtlA_AGrdMaxDecTrj is equal to LOCAA_s_LgtCtlA_AGrdMaxDec downwards limited to the output of the 2D interpolation parameter with px =VMMP_LOCADF_px_AGrdMaxDec_ACtlDmdDyn, py = VMMP_LOCADF_py_AGrdMaxDec_VCtlLgtVehCor, p2= VMMP_LOCADF_p2_LgtCtlA_ACtlGrdMaxDecLim and the x-input value is the difference between LOCAA_s_LgtCtlA_ADmd and previous value of LOCADF_s_LgtCtlA_ADmd, the y-input value is VSOEM_s_VLgtVehCor ELSE: LgtCtlA_AGrdMaxDecTrj is equal to LOCAA_s_LgtCtlA_AGrdMaxDec Raw{
"ID": "55046879",
"ASIL": " QM",
"Text": "IF OR[AND[1,2,3,4],AND[1,2,5]] \n_x000D_1) ASOTA_s_TqWhlBrk_TqAct is greater than 0.01\n_x000D_2) ARBLLCSC_s_LgtCtl_StAcv is equal to VMMP_ARBLLCSC_c_LgtCtl_StAcvTrjCtl\n_x000D_3) LOCDC_s_LgtCtlV_StAcv is not equal to VMMP_LOCDC_c_StAcvDCtl\n_x000D_4) LOCDL_s_LgtLimA_FlgAcv is false\n_x000D_5) VMMP_LOCADF_p_AGrdLim_SwtDeacAGrdMaxLim is true\n_x000D_THEN: \n_x000D_\n_x000D_LgtCtlA_AGrdMaxDecTrj \n_x000D_is equal to \n_x000D_LOCAA_s_LgtCtlA_AGrdMaxDec downwards limited to the output of the 2D interpolation parameter with\n_x000D_px =VMMP_LOCADF_px_AGrdMaxDec_ACtlDmdDyn,\n_x000D_py = VMMP_LOCADF_py_AGrdMaxDec_VCtlLgtVehCor,\n_x000D_p2= VMMP_LOCADF_p2_LgtCtlA_ACtlGrdMaxDecLim\n_x000D_and the x-input value is the difference between LOCAA_s_LgtCtlA_ADmd and previous value of LOCADF_s_LgtCtlA_ADmd,\n_x000D_the y-input value is VSOEM_s_VLgtVehCor\n_x000D_ELSE:\n_x000D_LgtCtlA_AGrdMaxDecTrj is equal to LOCAA_s_LgtCtlA_AGrdMaxDec",
"Type": "Pre Condition",
"Status": "Released",
"Summary": "",
"Relevant": "no",
"column_12": "",
"Foreign ID": "",
"Description": "IF OR[AND[1,2,3,4],AND[1,2,5]] \n_x000D_1) ASOTA_s_TqWhlBrk_TqAct is greater than 0.01\n_x000D_2) ARBLLCSC_s_LgtCtl_StAcv is equal to VMMP_ARBLLCSC_c_LgtCtl_StAcvTrjCtl\n_x000D_3) LOCDC_s_LgtCtlV_StAcv is not equal to VMMP_LOCDC_c_StAcvDCtl\n_x000D_4) LOCDL_s_LgtLimA_FlgAcv is false\n_x000D_5) VMMP_LOCADF_p_AGrdLim_SwtDeacAGrdMaxLim is true\n_x000D_THEN: \n_x000D_\n_x000D_LgtCtlA_AGrdMaxDecTrj \n_x000D_is equal to \n_x000D_LOCAA_s_LgtCtlA_AGrdMaxDec downwards limited to the output of the 2D interpolation parameter with\n_x000D_px =VMMP_LOCADF_px_AGrdMaxDec_ACtlDmdDyn,\n_x000D_py = VMMP_LOCADF_py_AGrdMaxDec_VCtlLgtVehCor,\n_x000D_p2= VMMP_LOCADF_p2_LgtCtlA_ACtlGrdMaxDecLim\n_x000D_and the x-input value is the difference between LOCAA_s_LgtCtlA_ADmd and previous value of LOCADF_s_LgtCtlA_ADmd,\n_x000D_the y-input value is VSOEM_s_VLgtVehCor\n_x000D_ELSE:\n_x000D_LgtCtlA_AGrdMaxDecTrj is equal to LOCAA_s_LgtCtlA_AGrdMaxDec",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} |
| 78 | 48928810 | Pre Condition | Released | no | False | type_not_target, relevance_filtered | IF AND[1,2] 1) ASOTA_s_TqWhlBrk_TqAct is greater than 0.01 2) ARBLLCSC_s_LgtCtl_StAcv is equal to VMMP_ARBLLCSC_c_LgtCtl_StAcvTrIF AND[1,2] 1) ASOTA_s_TqWhlBrk_TqAct is greater than 0.01 2) ARBLLCSC_s_LgtCtl_StAcv is equal to VMMP_ARBLLCSC_c_LgtCtl_StAcvTrjCtl THEN: LgtCtlA_AGrdMaxIncTrj is equal to LOCAA_s_LgtCtlA_AGrdMaxInc upwards limited to the output of the 2D interpolation parameter with px =VMMP_LOCADF_px_AGrdMaxInc_ACtlDmdDyn, py = VMMP_LOCADF_py_AGrdMaxInc_VCtlLgtVehCor, p2= VMMP_LOCADF_p2_LgtCtlA_ACtlGrdMaxIncLim and the x-input value is the difference between LOCAA_s_LgtCtlA_ADmd and previous value of LOCADF_s_LgtCtlA_ADmd, the y-input value is VSOEM_s_VLgtVehCor ELSE: LgtCtlA_AGrdMaxIncTrj is equal to LOCAA_s_LgtCtlA_AGrdMaxInc Raw{
"ID": "48928810",
"ASIL": " QM",
"Text": "IF AND[1,2]\n_x000D_1) ASOTA_s_TqWhlBrk_TqAct is greater than 0.01\n_x000D_2) ARBLLCSC_s_LgtCtl_StAcv is equal to VMMP_ARBLLCSC_c_LgtCtl_StAcvTrjCtl\n_x000D_THEN: \n_x000D_\n_x000D_LgtCtlA_AGrdMaxIncTrj \n_x000D_is equal to LOCAA_s_LgtCtlA_AGrdMaxInc upwards limited to the output of the 2D interpolation parameter with\n_x000D_px =VMMP_LOCADF_px_AGrdMaxInc_ACtlDmdDyn,\n_x000D_py = VMMP_LOCADF_py_AGrdMaxInc_VCtlLgtVehCor,\n_x000D_p2= VMMP_LOCADF_p2_LgtCtlA_ACtlGrdMaxIncLim\n_x000D_and the x-input value is the difference between LOCAA_s_LgtCtlA_ADmd and previous value of LOCADF_s_LgtCtlA_ADmd,\n_x000D_the y-input value is VSOEM_s_VLgtVehCor\n_x000D_ELSE:\n_x000D_LgtCtlA_AGrdMaxIncTrj is equal to LOCAA_s_LgtCtlA_AGrdMaxInc",
"Type": "Pre Condition",
"Status": "Released",
"Summary": "",
"Relevant": "no",
"column_12": "",
"Foreign ID": "",
"Description": "IF AND[1,2]\n_x000D_1) ASOTA_s_TqWhlBrk_TqAct is greater than 0.01\n_x000D_2) ARBLLCSC_s_LgtCtl_StAcv is equal to VMMP_ARBLLCSC_c_LgtCtl_StAcvTrjCtl\n_x000D_THEN: \n_x000D_\n_x000D_LgtCtlA_AGrdMaxIncTrj \n_x000D_is equal to LOCAA_s_LgtCtlA_AGrdMaxInc upwards limited to the output of the 2D interpolation parameter with\n_x000D_px =VMMP_LOCADF_px_AGrdMaxInc_ACtlDmdDyn,\n_x000D_py = VMMP_LOCADF_py_AGrdMaxInc_VCtlLgtVehCor,\n_x000D_p2= VMMP_LOCADF_p2_LgtCtlA_ACtlGrdMaxIncLim\n_x000D_and the x-input value is the difference between LOCAA_s_LgtCtlA_ADmd and previous value of LOCADF_s_LgtCtlA_ADmd,\n_x000D_the y-input value is VSOEM_s_VLgtVehCor\n_x000D_ELSE:\n_x000D_LgtCtlA_AGrdMaxIncTrj is equal to LOCAA_s_LgtCtlA_AGrdMaxInc",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} |
| 79 | 55046991 | Pre Condition | Released | no | False | type_not_target, relevance_filtered | IF OR[AND[1,2,3,4],AND[1,2,5]] 1) ASOTA_s_TqWhlBrk_TqAct is greater than 0.01 2) ARBLLCSC_s_LgtCtl_StAcv is equal to VMMP_ARBLLCIF OR[AND[1,2,3,4],AND[1,2,5]] 1) ASOTA_s_TqWhlBrk_TqAct is greater than 0.01 2) ARBLLCSC_s_LgtCtl_StAcv is equal to VMMP_ARBLLCSC_c_LgtCtl_StAcvTrjCtl 3) LOCDC_s_LgtCtlV_StAcv is not equal to VMMP_LOCDC_c_StAcvDCtl 4) LOCDL_s_LgtLimA_FlgAcv is false 5) VMMP_LOCADF_p_AGrdLim_SwtDeacAGrdMaxLim is true THEN: LgtCtlA_AGrdMaxIncTrj is equal to LOCAA_s_LgtCtlA_AGrdMaxInc upwards limited to the output of the 2D interpolation parameter with px =VMMP_LOCADF_px_AGrdMaxInc_ACtlDmdDyn, py = VMMP_LOCADF_py_AGrdMaxInc_VCtlLgtVehCor, p2= VMMP_LOCADF_p2_LgtCtlA_ACtlGrdMaxIncLim and the x-input value is the difference between LOCAA_s_LgtCtlA_ADmd and previous value of LOCADF_s_LgtCtlA_ADmd, the y-input value is VSOEM_s_VLgtVehCor ELSE: LgtCtlA_AGrdMaxIncTrj is equal to LOCAA_s_LgtCtlA_AGrdMaxInc Raw{
"ID": "55046991",
"ASIL": " QM",
"Text": "IF OR[AND[1,2,3,4],AND[1,2,5]]\n_x000D_1) ASOTA_s_TqWhlBrk_TqAct is greater than 0.01\n_x000D_2) ARBLLCSC_s_LgtCtl_StAcv is equal to VMMP_ARBLLCSC_c_LgtCtl_StAcvTrjCtl\n_x000D_3) LOCDC_s_LgtCtlV_StAcv is not equal to VMMP_LOCDC_c_StAcvDCtl\n_x000D_4) LOCDL_s_LgtLimA_FlgAcv is false\n_x000D_5) VMMP_LOCADF_p_AGrdLim_SwtDeacAGrdMaxLim is true\n_x000D_THEN: \n_x000D_\n_x000D_LgtCtlA_AGrdMaxIncTrj \n_x000D_is equal to LOCAA_s_LgtCtlA_AGrdMaxInc upwards limited to the output of the 2D interpolation parameter with\n_x000D_px =VMMP_LOCADF_px_AGrdMaxInc_ACtlDmdDyn,\n_x000D_py = VMMP_LOCADF_py_AGrdMaxInc_VCtlLgtVehCor,\n_x000D_p2= VMMP_LOCADF_p2_LgtCtlA_ACtlGrdMaxIncLim\n_x000D_and the x-input value is the difference between LOCAA_s_LgtCtlA_ADmd and previous value of LOCADF_s_LgtCtlA_ADmd,\n_x000D_the y-input value is VSOEM_s_VLgtVehCor\n_x000D_ELSE:\n_x000D_LgtCtlA_AGrdMaxIncTrj is equal to LOCAA_s_LgtCtlA_AGrdMaxInc",
"Type": "Pre Condition",
"Status": "Released",
"Summary": "",
"Relevant": "no",
"column_12": "",
"Foreign ID": "",
"Description": "IF OR[AND[1,2,3,4],AND[1,2,5]]\n_x000D_1) ASOTA_s_TqWhlBrk_TqAct is greater than 0.01\n_x000D_2) ARBLLCSC_s_LgtCtl_StAcv is equal to VMMP_ARBLLCSC_c_LgtCtl_StAcvTrjCtl\n_x000D_3) LOCDC_s_LgtCtlV_StAcv is not equal to VMMP_LOCDC_c_StAcvDCtl\n_x000D_4) LOCDL_s_LgtLimA_FlgAcv is false\n_x000D_5) VMMP_LOCADF_p_AGrdLim_SwtDeacAGrdMaxLim is true\n_x000D_THEN: \n_x000D_\n_x000D_LgtCtlA_AGrdMaxIncTrj \n_x000D_is equal to LOCAA_s_LgtCtlA_AGrdMaxInc upwards limited to the output of the 2D interpolation parameter with\n_x000D_px =VMMP_LOCADF_px_AGrdMaxInc_ACtlDmdDyn,\n_x000D_py = VMMP_LOCADF_py_AGrdMaxInc_VCtlLgtVehCor,\n_x000D_p2= VMMP_LOCADF_p2_LgtCtlA_ACtlGrdMaxIncLim\n_x000D_and the x-input value is the difference between LOCAA_s_LgtCtlA_ADmd and previous value of LOCADF_s_LgtCtlA_ADmd,\n_x000D_the y-input value is VSOEM_s_VLgtVehCor\n_x000D_ELSE:\n_x000D_LgtCtlA_AGrdMaxIncTrj is equal to LOCAA_s_LgtCtlA_AGrdMaxInc",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} |
| 80 | 16653019 | Functional | Released | yes | True | LOCADF_s_LgtCtlA_AGrdMaxInc shall be LOCAA_s_LgtCtlA_AGrdMaxInc if not required differently in this chapter Gradient_selection_CtLOCADF_s_LgtCtlA_AGrdMaxInc shall be LOCAA_s_LgtCtlA_AGrdMaxInc if not required differently in this chapter Gradient_selection_Ctl *FlgRstctAGrdIncTracCtl is false, if not required differently in this chapter Gradient_selection_Ctl Raw{
"ID": "16653019",
"ASIL": " QM",
"Text": "LOCADF_s_LgtCtlA_AGrdMaxInc shall be LOCAA_s_LgtCtlA_AGrdMaxInc if not required differently in this chapter\n_x000D_Gradient_selection_Ctl \n_x000D_ \n_x000D_ \n_x000D_*FlgRstctAGrdIncTracCtl is false, if not required differently in this chapter\n_x000D_Gradient_selection_Ctl",
"Type": "Functional",
"Status": "Released",
"Summary": "",
"Relevant": "yes",
"column_12": "",
"Foreign ID": "1218927",
"Description": "LOCADF_s_LgtCtlA_AGrdMaxInc shall be LOCAA_s_LgtCtlA_AGrdMaxInc if not required differently in this chapter\n_x000D_Gradient_selection_Ctl \n_x000D_ \n_x000D_ \n_x000D_*FlgRstctAGrdIncTracCtl is false, if not required differently in this chapter\n_x000D_Gradient_selection_Ctl",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} | |
| 81 | 48929237 | Functional | Released | yes | True | LOCADF_s_LgtCtlA_AGrdMaxInc shall be LgtCtlA_AGrdMaxIncTrj if not required differently in this chapter Gradient_selection_Ctl *LOCADF_s_LgtCtlA_AGrdMaxInc shall be LgtCtlA_AGrdMaxIncTrj if not required differently in this chapter Gradient_selection_Ctl *FlgRstctAGrdIncTracCtl is false, if not required differently in this chapter Gradient_selection_Ctl Raw{
"ID": "48929237",
"ASIL": " QM",
"Text": "LOCADF_s_LgtCtlA_AGrdMaxInc shall be LgtCtlA_AGrdMaxIncTrj if not required differently in this chapter\n_x000D_Gradient_selection_Ctl \n_x000D_ \n_x000D_ \n_x000D_*FlgRstctAGrdIncTracCtl is false, if not required differently in this chapter\n_x000D_Gradient_selection_Ctl",
"Type": "Functional",
"Status": "Released",
"Summary": "",
"Relevant": "yes",
"column_12": "",
"Foreign ID": "",
"Description": "LOCADF_s_LgtCtlA_AGrdMaxInc shall be LgtCtlA_AGrdMaxIncTrj if not required differently in this chapter\n_x000D_Gradient_selection_Ctl \n_x000D_ \n_x000D_ \n_x000D_*FlgRstctAGrdIncTracCtl is false, if not required differently in this chapter\n_x000D_Gradient_selection_Ctl",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} | |
| 82 | 36888994 | Pre Condition | Released | no | False | type_not_target, relevance_filtered | LgtCtlA_AGrdMaxInc shall be limited gradient *ADF_AGrdMaxInc (see chapter 36862411with *ADmd = LOCAA_s_LgtCtlA_ADmd *GrdMaxInc =LgtCtlA_AGrdMaxInc shall be limited gradient *ADF_AGrdMaxInc (see chapter 36862411with *ADmd = LOCAA_s_LgtCtlA_ADmd *GrdMaxInc = LgtCtlA_AGrdMaxIncTrj *ADmd_lastcycle = previous value of LOCADF_s_LgtCtlA_ADmd) Raw{
"ID": "36888994",
"ASIL": " QM",
"Text": "LgtCtlA_AGrdMaxInc shall be limited gradient *ADF_AGrdMaxInc (see chapter 36862411with\n_x000D_*ADmd = LOCAA_s_LgtCtlA_ADmd\n_x000D_*GrdMaxInc = LgtCtlA_AGrdMaxIncTrj \n_x000D_*ADmd_lastcycle = previous value of LOCADF_s_LgtCtlA_ADmd)",
"Type": "Pre Condition",
"Status": "Released",
"Summary": "",
"Relevant": "no",
"column_12": "",
"Foreign ID": "",
"Description": "LgtCtlA_AGrdMaxInc shall be limited gradient *ADF_AGrdMaxInc (see chapter 36862411with\n_x000D_*ADmd = LOCAA_s_LgtCtlA_ADmd\n_x000D_*GrdMaxInc = LgtCtlA_AGrdMaxIncTrj \n_x000D_*ADmd_lastcycle = previous value of LOCADF_s_LgtCtlA_ADmd)",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} |
| 83 | 36889716 | Pre Condition | Released | no | False | type_not_target, relevance_filtered | LgtCtlA_AGrdMaxDec shall be limited gradient *ADF_AGrdMaxDec (see chapter 36887854with *ADmd = LOCAA_s_LgtCtlA_ADmd *GrdMaxDec =LgtCtlA_AGrdMaxDec shall be limited gradient *ADF_AGrdMaxDec (see chapter 36887854with *ADmd = LOCAA_s_LgtCtlA_ADmd *GrdMaxDec = LgtCtlA_AGrdMaxDecTrj *ADmd_lastcycle = previous value of LOCADF_s_LgtCtlA_ADmd) Raw{
"ID": "36889716",
"ASIL": " QM",
"Text": "LgtCtlA_AGrdMaxDec shall be limited gradient *ADF_AGrdMaxDec (see chapter 36887854with\n_x000D_*ADmd = LOCAA_s_LgtCtlA_ADmd\n_x000D_*GrdMaxDec = LgtCtlA_AGrdMaxDecTrj \n_x000D_*ADmd_lastcycle = previous value of LOCADF_s_LgtCtlA_ADmd)",
"Type": "Pre Condition",
"Status": "Released",
"Summary": "",
"Relevant": "no",
"column_12": "",
"Foreign ID": "",
"Description": "LgtCtlA_AGrdMaxDec shall be limited gradient *ADF_AGrdMaxDec (see chapter 36887854with\n_x000D_*ADmd = LOCAA_s_LgtCtlA_ADmd\n_x000D_*GrdMaxDec = LgtCtlA_AGrdMaxDecTrj \n_x000D_*ADmd_lastcycle = previous value of LOCADF_s_LgtCtlA_ADmd)",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} |
| 84 | 36889375 | Functional | Released | yes | True | LOCADF_s_LgtCtlA_AGrdMaxInc shall be LgtCtlA_AGrdMaxInc if not required differently in this chapter LOCADF_s_LgtCtlA_AGrdMaxDec sLOCADF_s_LgtCtlA_AGrdMaxInc shall be LgtCtlA_AGrdMaxInc if not required differently in this chapter LOCADF_s_LgtCtlA_AGrdMaxDec shall be LgtCtlA_AGrdMaxDec if not required differently in this chapter Gradient_selection_Ctl *FlgRstctAGrdIncTracCtl is false, if not required differently in this chapter Gradient_selection_Ctl Raw{
"ID": "36889375",
"ASIL": " QM",
"Text": "LOCADF_s_LgtCtlA_AGrdMaxInc shall be LgtCtlA_AGrdMaxInc if not required differently in this chapter\n_x000D_LOCADF_s_LgtCtlA_AGrdMaxDec shall be LgtCtlA_AGrdMaxDec if not required differently in this chapter\n_x000D_Gradient_selection_Ctl \n_x000D_ \n_x000D_ \n_x000D_*FlgRstctAGrdIncTracCtl is false, if not required differently in this chapter\n_x000D_Gradient_selection_Ctl",
"Type": "Functional",
"Status": "Released",
"Summary": "",
"Relevant": "yes",
"column_12": "",
"Foreign ID": "",
"Description": "LOCADF_s_LgtCtlA_AGrdMaxInc shall be LgtCtlA_AGrdMaxInc if not required differently in this chapter\n_x000D_LOCADF_s_LgtCtlA_AGrdMaxDec shall be LgtCtlA_AGrdMaxDec if not required differently in this chapter\n_x000D_Gradient_selection_Ctl \n_x000D_ \n_x000D_ \n_x000D_*FlgRstctAGrdIncTracCtl is false, if not required differently in this chapter\n_x000D_Gradient_selection_Ctl",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} | |
| 85 | 16653020 | Pre Condition | Released | no | False | type_not_target, relevance_filtered | IF[1] 1.) VMMP_LOCADF_p_LgtA_SwtMdTarDynADrgANeut is true THEN: *ATarMdTarDynCtl is DSOPRE_s_DrvPed_ADrg ELSE: *ATarMdTarDynIF[1] 1.) VMMP_LOCADF_p_LgtA_SwtMdTarDynADrgANeut is true THEN: *ATarMdTarDynCtl is DSOPRE_s_DrvPed_ADrg ELSE: *ATarMdTarDynCtl is ASOPOT_s_ANeutTh Raw{
"ID": "16653020",
"ASIL": " QM",
"Text": "IF[1]\n_x000D_1.) VMMP_LOCADF_p_LgtA_SwtMdTarDynADrgANeut is true\n_x000D_THEN:\n_x000D_*ATarMdTarDynCtl is DSOPRE_s_DrvPed_ADrg\n_x000D_ELSE: \n_x000D_*ATarMdTarDynCtl is ASOPOT_s_ANeutTh",
"Type": "Pre Condition",
"Status": "Released",
"Summary": "",
"Relevant": "no",
"column_12": "",
"Foreign ID": "1249171",
"Description": "IF[1]\n_x000D_1.) VMMP_LOCADF_p_LgtA_SwtMdTarDynADrgANeut is true\n_x000D_THEN:\n_x000D_*ATarMdTarDynCtl is DSOPRE_s_DrvPed_ADrg\n_x000D_ELSE: \n_x000D_*ATarMdTarDynCtl is ASOPOT_s_ANeutTh",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} |
| 86 | 16653021 | Functional | Released | yes | True | IF[AND(1,2,3,OR(4,5))] 1.) VMMP_LOCADF_p_LgtCtlA_SwtNoGrdIntvTracCtl is true 2.) ASOAF_s_FlgIntvTracCtlSys is true 3.) ASOPOT_sIF[AND(1,2,3,OR(4,5))] 1.) VMMP_LOCADF_p_LgtCtlA_SwtNoGrdIntvTracCtl is true 2.) ASOAF_s_FlgIntvTracCtlSys is true 3.) ASOPOT_s_ATqDmd is greater then *ATarMdTarDynCtl 4.) conditions 1,2,3 are true for or a longer time than VMMP_LOCADF_p_LgtCtlA_TTurnOnDlyIntvTrac 5.) conditions 1,2,3 are false for a shorter timer than VMMP_LOCADF_p_LgtCtlA_TTurnOffDlyIntvTrac condidtion 4 was true for a longer time than VMMP_LOCADF_p_LgtCtlA_TTurnOnDlyIntvTrac THEN: LOCADF_s_LgtCtlA_AGrdMaxInc is 0 (zero) *FlgRstctAGrdIncTracCtl is true Raw{
"ID": "16653021",
"ASIL": " QM",
"Text": "IF[AND(1,2,3,OR(4,5))]\n_x000D_1.) VMMP_LOCADF_p_LgtCtlA_SwtNoGrdIntvTracCtl is true\n_x000D_2.) ASOAF_s_FlgIntvTracCtlSys is true\n_x000D_3.) ASOPOT_s_ATqDmd is greater then *ATarMdTarDynCtl\n_x000D_4.) conditions 1,2,3 are true for or a longer time than VMMP_LOCADF_p_LgtCtlA_TTurnOnDlyIntvTrac\n_x000D_5.) conditions 1,2,3 are false for a shorter timer than VMMP_LOCADF_p_LgtCtlA_TTurnOffDlyIntvTrac condidtion 4 was true for a longer time than VMMP_LOCADF_p_LgtCtlA_TTurnOnDlyIntvTrac\n_x000D_THEN:\n_x000D_LOCADF_s_LgtCtlA_AGrdMaxInc is 0 (zero)\n_x000D_*FlgRstctAGrdIncTracCtl is true",
"Type": "Functional",
"Status": "Released",
"Summary": "",
"Relevant": "yes",
"column_12": "",
"Foreign ID": "1249179",
"Description": "IF[AND(1,2,3,OR(4,5))]\n_x000D_1.) VMMP_LOCADF_p_LgtCtlA_SwtNoGrdIntvTracCtl is true\n_x000D_2.) ASOAF_s_FlgIntvTracCtlSys is true\n_x000D_3.) ASOPOT_s_ATqDmd is greater then *ATarMdTarDynCtl\n_x000D_4.) conditions 1,2,3 are true for or a longer time than VMMP_LOCADF_p_LgtCtlA_TTurnOnDlyIntvTrac\n_x000D_5.) conditions 1,2,3 are false for a shorter timer than VMMP_LOCADF_p_LgtCtlA_TTurnOffDlyIntvTrac condidtion 4 was true for a longer time than VMMP_LOCADF_p_LgtCtlA_TTurnOnDlyIntvTrac\n_x000D_THEN:\n_x000D_LOCADF_s_LgtCtlA_AGrdMaxInc is 0 (zero)\n_x000D_*FlgRstctAGrdIncTracCtl is true",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} | |
| 87 | 16653022 | Functional | Released | yes | True | IF AND[1,2] 1.) Bit position 4 of signal LOCCOP_s_TqWhlFb_StTrf is true 2.) VMMP_LOCADF_p_LgtCtlA_SwtLimTrfIncZeroTmp is true TIF AND[1,2] 1.) Bit position 4 of signal LOCCOP_s_TqWhlFb_StTrf is true 2.) VMMP_LOCADF_p_LgtCtlA_SwtLimTrfIncZeroTmp is true THEN: LOCADF_s_LgtCtlA_AGrdMaxInc is 0 (zero) *FlgRstctAGrdIncTracCtl is true Raw{
"ID": "16653022",
"ASIL": " QM",
"Text": "IF AND[1,2]\n_x000D_1.) Bit position 4 of signal LOCCOP_s_TqWhlFb_StTrf is true\n_x000D_2.) VMMP_LOCADF_p_LgtCtlA_SwtLimTrfIncZeroTmp is true\n_x000D_THEN:\n_x000D_LOCADF_s_LgtCtlA_AGrdMaxInc is 0 (zero)\n_x000D_*FlgRstctAGrdIncTracCtl is true",
"Type": "Functional",
"Status": "Released",
"Summary": "",
"Relevant": "yes",
"column_12": "",
"Foreign ID": "1313146",
"Description": "IF AND[1,2]\n_x000D_1.) Bit position 4 of signal LOCCOP_s_TqWhlFb_StTrf is true\n_x000D_2.) VMMP_LOCADF_p_LgtCtlA_SwtLimTrfIncZeroTmp is true\n_x000D_THEN:\n_x000D_LOCADF_s_LgtCtlA_AGrdMaxInc is 0 (zero)\n_x000D_*FlgRstctAGrdIncTracCtl is true",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} | |
| 88 | 16653023 | Functional | Released | yes | True | IF[AND(1,2,3,4,5)] 1.) LOCAA_s_LgtCtlA_MdTarDyn is VMMP_LOC_c_LgtCtlA_MdTarDynDynCmftFct 2.) ASOPOT_s_ATqDmd is smaller than *ATIF[AND(1,2,3,4,5)] 1.) LOCAA_s_LgtCtlA_MdTarDyn is VMMP_LOC_c_LgtCtlA_MdTarDynDynCmftFct 2.) ASOPOT_s_ATqDmd is smaller than *ATarMdTarDynCtl 3.) LOCAA_s_LgtCtlA_ADmd is greater than ASOPOT_s_ATqDmd 4.) The difference of DSOPRE_s_DrvPed_ADrg and ASOPOT_s_ATqDmd divided by VMMP_c_TiSmpl is greater then or equal to VMMP_LOCADF_p_LgtCtlA_AGrdMaxIncCmft 5.) *FlgRstctAGrdIncTracCtl is false THEN: LOCADF_s_LgtCtlA_AGrdMaxInc is the maximum of VMMP_LOCADF_p_LgtCtlA_AGrdMaxIncCmft and LOCAA_s_LgtCtlA_AGrdMaxInc Raw{
"ID": "16653023",
"ASIL": " QM",
"Text": "IF[AND(1,2,3,4,5)]\n_x000D_1.) LOCAA_s_LgtCtlA_MdTarDyn is VMMP_LOC_c_LgtCtlA_MdTarDynDynCmftFct\n_x000D_2.) ASOPOT_s_ATqDmd is smaller than *ATarMdTarDynCtl\n_x000D_3.) LOCAA_s_LgtCtlA_ADmd is greater than ASOPOT_s_ATqDmd\n_x000D_4.) The difference of DSOPRE_s_DrvPed_ADrg and ASOPOT_s_ATqDmd divided by VMMP_c_TiSmpl is greater then or equal to VMMP_LOCADF_p_LgtCtlA_AGrdMaxIncCmft\n_x000D_5.) *FlgRstctAGrdIncTracCtl is false\n_x000D_THEN:\n_x000D_LOCADF_s_LgtCtlA_AGrdMaxInc is the maximum of VMMP_LOCADF_p_LgtCtlA_AGrdMaxIncCmft and LOCAA_s_LgtCtlA_AGrdMaxInc",
"Type": "Functional",
"Status": "Released",
"Summary": "",
"Relevant": "yes",
"column_12": "",
"Foreign ID": "1218936",
"Description": "IF[AND(1,2,3,4,5)]\n_x000D_1.) LOCAA_s_LgtCtlA_MdTarDyn is VMMP_LOC_c_LgtCtlA_MdTarDynDynCmftFct\n_x000D_2.) ASOPOT_s_ATqDmd is smaller than *ATarMdTarDynCtl\n_x000D_3.) LOCAA_s_LgtCtlA_ADmd is greater than ASOPOT_s_ATqDmd\n_x000D_4.) The difference of DSOPRE_s_DrvPed_ADrg and ASOPOT_s_ATqDmd divided by VMMP_c_TiSmpl is greater then or equal to VMMP_LOCADF_p_LgtCtlA_AGrdMaxIncCmft\n_x000D_5.) *FlgRstctAGrdIncTracCtl is false\n_x000D_THEN:\n_x000D_LOCADF_s_LgtCtlA_AGrdMaxInc is the maximum of VMMP_LOCADF_p_LgtCtlA_AGrdMaxIncCmft and LOCAA_s_LgtCtlA_AGrdMaxInc",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} | |
| 89 | 20198676 | Functional | Released | yes | True | IF[AND(1,2,3,4,5)] 1.) LOCAA_s_LgtCtlA_MdTarDyn is VMMP_LOC_c_LgtCtlA_MdTarDynDynCmftFct 2.) ASOPOT_s_ATqDmd is smaller than *ATarIF[AND(1,2,3,4,5)] 1.) LOCAA_s_LgtCtlA_MdTarDyn is VMMP_LOC_c_LgtCtlA_MdTarDynDynCmftFct 2.) ASOPOT_s_ATqDmd is smaller than *ATarMdTarDynCtl 3.) LOCADF_m_LgtCtlA_ADmd is greater than ASOPOT_s_ATqDmd 4.) The difference of DSOPRE_s_DrvPed_ADrg and ASOPOT_s_ATqDmd divided by VMMP_c_TiSmpl is greater then or equal to VMMP_LOCADF_p_LgtCtlA_AGrdMaxIncCmft 5.) *FlgRstctAGrdIncTracCtl is false THEN: LOCADF_s_LgtCtlA_AGrdMaxInc is the maximum of VMMP_LOCADF_p_LgtCtlA_AGrdMaxIncCmft and LgtCtlA_AGrdMaxIncTrj Raw{
"ID": "20198676",
"ASIL": " QM",
"Text": "IF[AND(1,2,3,4,5)]\n_x000D_1.) LOCAA_s_LgtCtlA_MdTarDyn is VMMP_LOC_c_LgtCtlA_MdTarDynDynCmftFct\n_x000D_2.) ASOPOT_s_ATqDmd is smaller than *ATarMdTarDynCtl\n_x000D_3.) LOCADF_m_LgtCtlA_ADmd is greater than ASOPOT_s_ATqDmd\n_x000D_4.) The difference of DSOPRE_s_DrvPed_ADrg and ASOPOT_s_ATqDmd divided by VMMP_c_TiSmpl is greater then or equal to VMMP_LOCADF_p_LgtCtlA_AGrdMaxIncCmft\n_x000D_5.) *FlgRstctAGrdIncTracCtl is false\n_x000D_THEN:\n_x000D_LOCADF_s_LgtCtlA_AGrdMaxInc is the maximum of VMMP_LOCADF_p_LgtCtlA_AGrdMaxIncCmft and LgtCtlA_AGrdMaxIncTrj",
"Type": "Functional",
"Status": "Released",
"Summary": "",
"Relevant": "yes",
"column_12": "",
"Foreign ID": "",
"Description": "IF[AND(1,2,3,4,5)]\n1.) LOCAA_s_LgtCtlA_MdTarDyn is VMMP_LOC_c_LgtCtlA_MdTarDynDynCmftFct\n2.) ASOPOT_s_ATqDmd is smaller than *ATarMdTarDynCtl\n3.) LOCADF_m_LgtCtlA_ADmd is greater than ASOPOT_s_ATqDmd\n4.) The difference of DSOPRE_s_DrvPed_ADrg and ASOPOT_s_ATqDmd divided by VMMP_c_TiSmpl is greater then or equal to VMMP_LOCADF_p_LgtCtlA_AGrdMaxIncCmft\n5.) *FlgRstctAGrdIncTracCtl is false\nTHEN:\nLOCADF_s_LgtCtlA_AGrdMaxInc is the maximum of VMMP_LOCADF_p_LgtCtlA_AGrdMaxIncCmft and LgtCtlA_AGrdMaxIncTrj",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} | |
| 90 | 36890352 | Functional | Released | yes | True | IF[AND(1,2,3,4,5)] 1.) LOCAA_s_LgtCtlA_MdTarDyn is VMMP_LOC_c_LgtCtlA_MdTarDynDynCmftFct 2.) ASOPOT_s_ATqDmd is smaller than *ATIF[AND(1,2,3,4,5)] 1.) LOCAA_s_LgtCtlA_MdTarDyn is VMMP_LOC_c_LgtCtlA_MdTarDynDynCmftFct 2.) ASOPOT_s_ATqDmd is smaller than *ATarMdTarDynCtl 3.) LOCADF_m_LgtCtlA_ADmd is greater than ASOPOT_s_ATqDmd 4.) The difference of DSOPRE_s_DrvPed_ADrg and ASOPOT_s_ATqDmd divided by VMMP_c_TiSmpl is greater then or equal to VMMP_LOCADF_p_LgtCtlA_AGrdMaxIncCmft 5.) *FlgRstctAGrdIncTracCtl is false THEN: LOCADF_s_LgtCtlA_AGrdMaxInc is the maximum of VMMP_LOCADF_p_LgtCtlA_AGrdMaxIncCmft and LgtCtlA_AGrdMaxInc Raw{
"ID": "36890352",
"ASIL": " QM",
"Text": "IF[AND(1,2,3,4,5)]\n_x000D_1.) LOCAA_s_LgtCtlA_MdTarDyn is VMMP_LOC_c_LgtCtlA_MdTarDynDynCmftFct\n_x000D_2.) ASOPOT_s_ATqDmd is smaller than *ATarMdTarDynCtl\n_x000D_3.) LOCADF_m_LgtCtlA_ADmd is greater than ASOPOT_s_ATqDmd\n_x000D_4.) The difference of DSOPRE_s_DrvPed_ADrg and ASOPOT_s_ATqDmd divided by VMMP_c_TiSmpl is greater then or equal to VMMP_LOCADF_p_LgtCtlA_AGrdMaxIncCmft\n_x000D_5.) *FlgRstctAGrdIncTracCtl is false\n_x000D_THEN:\n_x000D_LOCADF_s_LgtCtlA_AGrdMaxInc is the maximum of VMMP_LOCADF_p_LgtCtlA_AGrdMaxIncCmft and LgtCtlA_AGrdMaxInc",
"Type": "Functional",
"Status": "Released",
"Summary": "",
"Relevant": "yes",
"column_12": "",
"Foreign ID": "",
"Description": "IF[AND(1,2,3,4,5)]\n_x000D_1.) LOCAA_s_LgtCtlA_MdTarDyn is VMMP_LOC_c_LgtCtlA_MdTarDynDynCmftFct\n_x000D_2.) ASOPOT_s_ATqDmd is smaller than *ATarMdTarDynCtl\n_x000D_3.) LOCADF_m_LgtCtlA_ADmd is greater than ASOPOT_s_ATqDmd\n_x000D_4.) The difference of DSOPRE_s_DrvPed_ADrg and ASOPOT_s_ATqDmd divided by VMMP_c_TiSmpl is greater then or equal to VMMP_LOCADF_p_LgtCtlA_AGrdMaxIncCmft\n_x000D_5.) *FlgRstctAGrdIncTracCtl is false\n_x000D_THEN:\n_x000D_LOCADF_s_LgtCtlA_AGrdMaxInc is the maximum of VMMP_LOCADF_p_LgtCtlA_AGrdMaxIncCmft and LgtCtlA_AGrdMaxInc",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} | |
| 91 | 16653024 | Functional | Released | yes | True | IF[AND(1,2,3,4,5)] 1.) LOCAA_s_LgtCtlA_MdTarDyn is VMMP_LOC_c_LgtCtlA_MdTarDynDynCmftFct 2.) ASOPOT_s_ATqDmd is smaller than *ATIF[AND(1,2,3,4,5)] 1.) LOCAA_s_LgtCtlA_MdTarDyn is VMMP_LOC_c_LgtCtlA_MdTarDynDynCmftFct 2.) ASOPOT_s_ATqDmd is smaller than *ATarMdTarDynCtl 3.) LOCAA_s_LgtCtlA_ADmd is greater than ASOPOT_s_ATqDmd 4.) The difference of DSOPRE_s_DrvPed_ADrg and ASOPOT_s_ATqDmd divided by VMMP_c_TiSmpl is smaller then VMMP_LOCADF_p_LgtCtlA_AGrdMaxIncCmft 5.) *FlgRstctAGrdIncTracCtl is false THEN: LOCADF_s_LgtCtlA_AGrdMaxInc is the maximum of LOCAA_s_LgtCtlA_AGrdMaxInc and the maximum of zero and the difference of DSOPRE_s_DrvPed_ADrg and ASOPOT_s_ATqDmd divided by VMMP_c_TiSmpl Raw{
"ID": "16653024",
"ASIL": " QM",
"Text": "IF[AND(1,2,3,4,5)]\n_x000D_1.) LOCAA_s_LgtCtlA_MdTarDyn is VMMP_LOC_c_LgtCtlA_MdTarDynDynCmftFct\n_x000D_2.) ASOPOT_s_ATqDmd is smaller than *ATarMdTarDynCtl\n_x000D_3.) LOCAA_s_LgtCtlA_ADmd is greater than ASOPOT_s_ATqDmd\n_x000D_4.) The difference of DSOPRE_s_DrvPed_ADrg and ASOPOT_s_ATqDmd divided by VMMP_c_TiSmpl is smaller then VMMP_LOCADF_p_LgtCtlA_AGrdMaxIncCmft\n_x000D_5.) *FlgRstctAGrdIncTracCtl is false\n_x000D_THEN:\n_x000D_LOCADF_s_LgtCtlA_AGrdMaxInc is the maximum of LOCAA_s_LgtCtlA_AGrdMaxInc and the maximum of zero and the difference of DSOPRE_s_DrvPed_ADrg and ASOPOT_s_ATqDmd divided by VMMP_c_TiSmpl",
"Type": "Functional",
"Status": "Released",
"Summary": "",
"Relevant": "yes",
"column_12": "",
"Foreign ID": "1245116",
"Description": "IF[AND(1,2,3,4,5)]\n_x000D_1.) LOCAA_s_LgtCtlA_MdTarDyn is VMMP_LOC_c_LgtCtlA_MdTarDynDynCmftFct\n_x000D_2.) ASOPOT_s_ATqDmd is smaller than *ATarMdTarDynCtl\n_x000D_3.) LOCAA_s_LgtCtlA_ADmd is greater than ASOPOT_s_ATqDmd\n_x000D_4.) The difference of DSOPRE_s_DrvPed_ADrg and ASOPOT_s_ATqDmd divided by VMMP_c_TiSmpl is smaller then VMMP_LOCADF_p_LgtCtlA_AGrdMaxIncCmft\n_x000D_5.) *FlgRstctAGrdIncTracCtl is false\n_x000D_THEN:\n_x000D_LOCADF_s_LgtCtlA_AGrdMaxInc is the maximum of LOCAA_s_LgtCtlA_AGrdMaxInc and the maximum of zero and the difference of DSOPRE_s_DrvPed_ADrg and ASOPOT_s_ATqDmd divided by VMMP_c_TiSmpl",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} | |
| 92 | 20198678 | Functional | Released | yes | True | IF[AND(1,2,3,4,5)] 1.) LOCAA_s_LgtCtlA_MdTarDyn is VMMP_LOC_c_LgtCtlA_MdTarDynDynCmftFct 2.) ASOPOT_s_ATqDmd is smaller than *ATIF[AND(1,2,3,4,5)] 1.) LOCAA_s_LgtCtlA_MdTarDyn is VMMP_LOC_c_LgtCtlA_MdTarDynDynCmftFct 2.) ASOPOT_s_ATqDmd is smaller than *ATarMdTarDynCtl 3.) LOCADF_m_LgtCtlA_ADmd is greater than ASOPOT_s_ATqDmd 4.) The difference of DSOPRE_s_DrvPed_ADrg and ASOPOT_s_ATqDmd divided by VMMP_c_TiSmpl is smaller then VMMP_LOCADF_p_LgtCtlA_AGrdMaxIncCmft 5.) *FlgRstctAGrdIncTracCtl is false THEN: LOCADF_s_LgtCtlA_AGrdMaxInc is the maximum of LgtCtlA_AGrdMaxIncTrj and the maximum of zero and the difference of DSOPRE_s_DrvPed_ADrg and ASOPOT_s_ATqDmd divided by VMMP_c_TiSmpl Raw{
"ID": "20198678",
"ASIL": " QM",
"Text": "IF[AND(1,2,3,4,5)]\n_x000D_1.) LOCAA_s_LgtCtlA_MdTarDyn is VMMP_LOC_c_LgtCtlA_MdTarDynDynCmftFct\n_x000D_2.) ASOPOT_s_ATqDmd is smaller than *ATarMdTarDynCtl\n_x000D_3.) LOCADF_m_LgtCtlA_ADmd is greater than ASOPOT_s_ATqDmd\n_x000D_4.) The difference of DSOPRE_s_DrvPed_ADrg and ASOPOT_s_ATqDmd divided by VMMP_c_TiSmpl is smaller then VMMP_LOCADF_p_LgtCtlA_AGrdMaxIncCmft\n_x000D_5.) *FlgRstctAGrdIncTracCtl is false\n_x000D_THEN:\n_x000D_LOCADF_s_LgtCtlA_AGrdMaxInc is the maximum of LgtCtlA_AGrdMaxIncTrj and the maximum of zero and the difference of DSOPRE_s_DrvPed_ADrg and ASOPOT_s_ATqDmd divided by VMMP_c_TiSmpl",
"Type": "Functional",
"Status": "Released",
"Summary": "",
"Relevant": "yes",
"column_12": "",
"Foreign ID": "",
"Description": "IF[AND(1,2,3,4,5)]\n_x000D_1.) LOCAA_s_LgtCtlA_MdTarDyn is VMMP_LOC_c_LgtCtlA_MdTarDynDynCmftFct\n_x000D_2.) ASOPOT_s_ATqDmd is smaller than *ATarMdTarDynCtl\n_x000D_3.) LOCADF_m_LgtCtlA_ADmd is greater than ASOPOT_s_ATqDmd\n_x000D_4.) The difference of DSOPRE_s_DrvPed_ADrg and ASOPOT_s_ATqDmd divided by VMMP_c_TiSmpl is smaller then VMMP_LOCADF_p_LgtCtlA_AGrdMaxIncCmft\n_x000D_5.) *FlgRstctAGrdIncTracCtl is false\n_x000D_THEN:\n_x000D_LOCADF_s_LgtCtlA_AGrdMaxInc is the maximum of LgtCtlA_AGrdMaxIncTrj and the maximum of zero and the difference of DSOPRE_s_DrvPed_ADrg and ASOPOT_s_ATqDmd divided by VMMP_c_TiSmpl",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} | |
| 93 | 36890365 | Functional | Released | yes | True | IF[AND(1,2,3,4,5)] 1.) LOCAA_s_LgtCtlA_MdTarDyn is VMMP_LOC_c_LgtCtlA_MdTarDynDynCmftFct 2.) ASOPOT_s_ATqDmd is smaller than *ATIF[AND(1,2,3,4,5)] 1.) LOCAA_s_LgtCtlA_MdTarDyn is VMMP_LOC_c_LgtCtlA_MdTarDynDynCmftFct 2.) ASOPOT_s_ATqDmd is smaller than *ATarMdTarDynCtl 3.) LOCADF_m_LgtCtlA_ADmd is greater than ASOPOT_s_ATqDmd 4.) The difference of DSOPRE_s_DrvPed_ADrg and ASOPOT_s_ATqDmd divided by VMMP_c_TiSmpl is smaller then VMMP_LOCADF_p_LgtCtlA_AGrdMaxIncCmft 5.) *FlgRstctAGrdIncTracCtl is false THEN: LOCADF_s_LgtCtlA_AGrdMaxInc is the maximum of LgtCtlA_AGrdMaxInc and the maximum of zero and the difference of DSOPRE_s_DrvPed_ADrg and ASOPOT_s_ATqDmd divided by VMMP_c_TiSmpl Raw{
"ID": "36890365",
"ASIL": " QM",
"Text": "IF[AND(1,2,3,4,5)]\n_x000D_1.) LOCAA_s_LgtCtlA_MdTarDyn is VMMP_LOC_c_LgtCtlA_MdTarDynDynCmftFct\n_x000D_2.) ASOPOT_s_ATqDmd is smaller than *ATarMdTarDynCtl\n_x000D_3.) LOCADF_m_LgtCtlA_ADmd is greater than ASOPOT_s_ATqDmd\n_x000D_4.) The difference of DSOPRE_s_DrvPed_ADrg and ASOPOT_s_ATqDmd divided by VMMP_c_TiSmpl is smaller then VMMP_LOCADF_p_LgtCtlA_AGrdMaxIncCmft\n_x000D_5.) *FlgRstctAGrdIncTracCtl is false\n_x000D_THEN:\n_x000D_LOCADF_s_LgtCtlA_AGrdMaxInc is the maximum of LgtCtlA_AGrdMaxInc and the maximum of zero and the difference of DSOPRE_s_DrvPed_ADrg and ASOPOT_s_ATqDmd divided by VMMP_c_TiSmpl",
"Type": "Functional",
"Status": "Released",
"Summary": "",
"Relevant": "yes",
"column_12": "",
"Foreign ID": "",
"Description": "IF[AND(1,2,3,4,5)]\n_x000D_1.) LOCAA_s_LgtCtlA_MdTarDyn is VMMP_LOC_c_LgtCtlA_MdTarDynDynCmftFct\n_x000D_2.) ASOPOT_s_ATqDmd is smaller than *ATarMdTarDynCtl\n_x000D_3.) LOCADF_m_LgtCtlA_ADmd is greater than ASOPOT_s_ATqDmd\n_x000D_4.) The difference of DSOPRE_s_DrvPed_ADrg and ASOPOT_s_ATqDmd divided by VMMP_c_TiSmpl is smaller then VMMP_LOCADF_p_LgtCtlA_AGrdMaxIncCmft\n_x000D_5.) *FlgRstctAGrdIncTracCtl is false\n_x000D_THEN:\n_x000D_LOCADF_s_LgtCtlA_AGrdMaxInc is the maximum of LgtCtlA_AGrdMaxInc and the maximum of zero and the difference of DSOPRE_s_DrvPed_ADrg and ASOPOT_s_ATqDmd divided by VMMP_c_TiSmpl",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} | |
| 94 | 16653025 | Functional | Released | yes | True | IF[AND(1,2,3,4,5)] 1.) LOCAA_s_LgtCtlA_MdTarDyn is VMMP_LOC_c_LgtCtlA_MdTarDynDynEmgcyFct 2.) ASOPOT_s_ATqDmd is smaller than *IF[AND(1,2,3,4,5)] 1.) LOCAA_s_LgtCtlA_MdTarDyn is VMMP_LOC_c_LgtCtlA_MdTarDynDynEmgcyFct 2.) ASOPOT_s_ATqDmd is smaller than *ATarMdTarDynCtl 3.) LOCAA_s_LgtCtlA_ADmd is greater than ASOPOT_s_ATqDmd 4.) The difference of DSOPRE_s_DrvPed_ADrg and ASOPOT_s_ATqDmd divided by VMMP_c_TiSmpl is greater then or equal to VMMP_LOCADF_p_LgtCtlA_AGrdMaxIncEmgcy 5.) *FlgRstctAGrdIncTracCtl is false THEN: LOCADF_s_LgtCtlA_AGrdMaxInc is the maximum of VMMP_LOCADF_p_LgtCtlA_AGrdMaxIncEmgcy and LOCAA_s_LgtCtlA_AGrdMaxInc Raw{
"ID": "16653025",
"ASIL": " QM",
"Text": "IF[AND(1,2,3,4,5)]\n_x000D_1.) LOCAA_s_LgtCtlA_MdTarDyn is\n_x000D_VMMP_LOC_c_LgtCtlA_MdTarDynDynEmgcyFct\n_x000D_2.) ASOPOT_s_ATqDmd is smaller than *ATarMdTarDynCtl\n_x000D_3.) LOCAA_s_LgtCtlA_ADmd is greater than ASOPOT_s_ATqDmd\n_x000D_4.) The difference of DSOPRE_s_DrvPed_ADrg and ASOPOT_s_ATqDmd divided by VMMP_c_TiSmpl is greater then or equal to VMMP_LOCADF_p_LgtCtlA_AGrdMaxIncEmgcy\n_x000D_5.) *FlgRstctAGrdIncTracCtl is false\n_x000D_THEN:\n_x000D_LOCADF_s_LgtCtlA_AGrdMaxInc is the maximum of VMMP_LOCADF_p_LgtCtlA_AGrdMaxIncEmgcy and LOCAA_s_LgtCtlA_AGrdMaxInc",
"Type": "Functional",
"Status": "Released",
"Summary": "",
"Relevant": "yes",
"column_12": "",
"Foreign ID": "1218938",
"Description": "IF[AND(1,2,3,4,5)]\n_x000D_1.) LOCAA_s_LgtCtlA_MdTarDyn is\n_x000D_VMMP_LOC_c_LgtCtlA_MdTarDynDynEmgcyFct\n_x000D_2.) ASOPOT_s_ATqDmd is smaller than *ATarMdTarDynCtl\n_x000D_3.) LOCAA_s_LgtCtlA_ADmd is greater than ASOPOT_s_ATqDmd\n_x000D_4.) The difference of DSOPRE_s_DrvPed_ADrg and ASOPOT_s_ATqDmd divided by VMMP_c_TiSmpl is greater then or equal to VMMP_LOCADF_p_LgtCtlA_AGrdMaxIncEmgcy\n_x000D_5.) *FlgRstctAGrdIncTracCtl is false\n_x000D_THEN:\n_x000D_LOCADF_s_LgtCtlA_AGrdMaxInc is the maximum of VMMP_LOCADF_p_LgtCtlA_AGrdMaxIncEmgcy and LOCAA_s_LgtCtlA_AGrdMaxInc",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} | |
| 95 | 20198685 | Functional | Released | yes | True | IF[AND(1,2,3,4,5)] 1.) LOCAA_s_LgtCtlA_MdTarDyn is VMMP_LOC_c_LgtCtlA_MdTarDynDynEmgcyFct 2.) ASOPOT_s_ATqDmd is smaller than *IF[AND(1,2,3,4,5)] 1.) LOCAA_s_LgtCtlA_MdTarDyn is VMMP_LOC_c_LgtCtlA_MdTarDynDynEmgcyFct 2.) ASOPOT_s_ATqDmd is smaller than *ATarMdTarDynCtl 3.) LOCADF_m_LgtCtlA_ADmd is greater than ASOPOT_s_ATqDmd 4.) The difference of DSOPRE_s_DrvPed_ADrg and ASOPOT_s_ATqDmd divided by VMMP_c_TiSmpl is greater then or equal to VMMP_LOCADF_p_LgtCtlA_AGrdMaxIncEmgcy 5.) *FlgRstctAGrdIncTracCtl is false THEN: LOCADF_s_LgtCtlA_AGrdMaxInc is the maximum of VMMP_LOCADF_p_LgtCtlA_AGrdMaxIncEmgcy and LgtCtlA_AGrdMaxIncTrj Raw{
"ID": "20198685",
"ASIL": " QM",
"Text": "IF[AND(1,2,3,4,5)]\n_x000D_1.) LOCAA_s_LgtCtlA_MdTarDyn is\n_x000D_VMMP_LOC_c_LgtCtlA_MdTarDynDynEmgcyFct\n_x000D_2.) ASOPOT_s_ATqDmd is smaller than *ATarMdTarDynCtl\n_x000D_3.) LOCADF_m_LgtCtlA_ADmd is greater than ASOPOT_s_ATqDmd\n_x000D_4.) The difference of DSOPRE_s_DrvPed_ADrg and ASOPOT_s_ATqDmd divided by VMMP_c_TiSmpl is greater then or equal to VMMP_LOCADF_p_LgtCtlA_AGrdMaxIncEmgcy\n_x000D_5.) *FlgRstctAGrdIncTracCtl is false\n_x000D_ \n_x000D_ \n_x000D_THEN:\n_x000D_LOCADF_s_LgtCtlA_AGrdMaxInc is the maximum of VMMP_LOCADF_p_LgtCtlA_AGrdMaxIncEmgcy and LgtCtlA_AGrdMaxIncTrj",
"Type": "Functional",
"Status": "Released",
"Summary": "",
"Relevant": "yes",
"column_12": "",
"Foreign ID": "",
"Description": "IF[AND(1,2,3,4,5)]\n_x000D_1.) LOCAA_s_LgtCtlA_MdTarDyn is\n_x000D_VMMP_LOC_c_LgtCtlA_MdTarDynDynEmgcyFct\n_x000D_2.) ASOPOT_s_ATqDmd is smaller than *ATarMdTarDynCtl\n_x000D_3.) LOCADF_m_LgtCtlA_ADmd is greater than ASOPOT_s_ATqDmd\n_x000D_4.) The difference of DSOPRE_s_DrvPed_ADrg and ASOPOT_s_ATqDmd divided by VMMP_c_TiSmpl is greater then or equal to VMMP_LOCADF_p_LgtCtlA_AGrdMaxIncEmgcy\n_x000D_5.) *FlgRstctAGrdIncTracCtl is false\n_x000D_ \n_x000D_ \n_x000D_THEN:\n_x000D_LOCADF_s_LgtCtlA_AGrdMaxInc is the maximum of VMMP_LOCADF_p_LgtCtlA_AGrdMaxIncEmgcy and LgtCtlA_AGrdMaxIncTrj",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} | |
| 96 | 36890397 | Functional | Released | yes | True | IF[AND(1,2,3,4,5)] 1.) LOCAA_s_LgtCtlA_MdTarDyn is VMMP_LOC_c_LgtCtlA_MdTarDynDynEmgcyFct 2.) ASOPOT_s_ATqDmd is smaller than *IF[AND(1,2,3,4,5)] 1.) LOCAA_s_LgtCtlA_MdTarDyn is VMMP_LOC_c_LgtCtlA_MdTarDynDynEmgcyFct 2.) ASOPOT_s_ATqDmd is smaller than *ATarMdTarDynCtl 3.) LOCADF_m_LgtCtlA_ADmd is greater than ASOPOT_s_ATqDmd 4.) The difference of DSOPRE_s_DrvPed_ADrg and ASOPOT_s_ATqDmd divided by VMMP_c_TiSmpl is greater then or equal to VMMP_LOCADF_p_LgtCtlA_AGrdMaxIncEmgcy 5.) *FlgRstctAGrdIncTracCtl is false THEN: LOCADF_s_LgtCtlA_AGrdMaxInc is the maximum of VMMP_LOCADF_p_LgtCtlA_AGrdMaxIncEmgcy and LgtCtlA_AGrdMaxInc Raw{
"ID": "36890397",
"ASIL": " QM",
"Text": "IF[AND(1,2,3,4,5)]\n_x000D_1.) LOCAA_s_LgtCtlA_MdTarDyn is\n_x000D_VMMP_LOC_c_LgtCtlA_MdTarDynDynEmgcyFct\n_x000D_2.) ASOPOT_s_ATqDmd is smaller than *ATarMdTarDynCtl\n_x000D_3.) LOCADF_m_LgtCtlA_ADmd is greater than ASOPOT_s_ATqDmd\n_x000D_4.) The difference of DSOPRE_s_DrvPed_ADrg and ASOPOT_s_ATqDmd divided by VMMP_c_TiSmpl is greater then or equal to VMMP_LOCADF_p_LgtCtlA_AGrdMaxIncEmgcy\n_x000D_5.) *FlgRstctAGrdIncTracCtl is false\n_x000D_ \n_x000D_ \n_x000D_THEN:\n_x000D_LOCADF_s_LgtCtlA_AGrdMaxInc is the maximum of VMMP_LOCADF_p_LgtCtlA_AGrdMaxIncEmgcy and LgtCtlA_AGrdMaxInc",
"Type": "Functional",
"Status": "Released",
"Summary": "",
"Relevant": "yes",
"column_12": "",
"Foreign ID": "",
"Description": "IF[AND(1,2,3,4,5)]\n_x000D_1.) LOCAA_s_LgtCtlA_MdTarDyn is\n_x000D_VMMP_LOC_c_LgtCtlA_MdTarDynDynEmgcyFct\n_x000D_2.) ASOPOT_s_ATqDmd is smaller than *ATarMdTarDynCtl\n_x000D_3.) LOCADF_m_LgtCtlA_ADmd is greater than ASOPOT_s_ATqDmd\n_x000D_4.) The difference of DSOPRE_s_DrvPed_ADrg and ASOPOT_s_ATqDmd divided by VMMP_c_TiSmpl is greater then or equal to VMMP_LOCADF_p_LgtCtlA_AGrdMaxIncEmgcy\n_x000D_5.) *FlgRstctAGrdIncTracCtl is false\n_x000D_ \n_x000D_ \n_x000D_THEN:\n_x000D_LOCADF_s_LgtCtlA_AGrdMaxInc is the maximum of VMMP_LOCADF_p_LgtCtlA_AGrdMaxIncEmgcy and LgtCtlA_AGrdMaxInc",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} | |
| 97 | 16653026 | Functional | Released | yes | True | IF[AND(1,2,3,4,5)] 1.) LOCAA_s_LgtCtlA_MdTarDyn is VMMP_LOC_c_LgtCtlA_MdTarDynDynEmgcyFct 2.) ASOPOT_s_ATqDmd is smaller than *IF[AND(1,2,3,4,5)] 1.) LOCAA_s_LgtCtlA_MdTarDyn is VMMP_LOC_c_LgtCtlA_MdTarDynDynEmgcyFct 2.) ASOPOT_s_ATqDmd is smaller than *ATarMdTarDynCtl 3.) LOCAA_s_LgtCtlA_ADmd is greater than ASOPOT_s_ATqDmd 4.) The difference of DSOPRE_s_DrvPed_ADrg and ASOPOT_s_ATqDmd divided by VMMP_c_TiSmpl is smaller then VMMP_LOCADF_p_LgtCtlA_AGrdMaxIncEmgcy 5.) *FlgRstctAGrdIncTracCtl is false THEN: LOCADF_s_LgtCtlA_AGrdMaxInc is the maximum of LOCAA_s_LgtCtlA_AGrdMaxInc and the maximum of zero and the difference of DSOPRE_s_DrvPed_ADrg and ASOPOT_s_ATqDmd divided by VMMP_c_TiSmpl Raw{
"ID": "16653026",
"ASIL": " QM",
"Text": "IF[AND(1,2,3,4,5)]\n_x000D_1.) LOCAA_s_LgtCtlA_MdTarDyn is\n_x000D_VMMP_LOC_c_LgtCtlA_MdTarDynDynEmgcyFct\n_x000D_2.) ASOPOT_s_ATqDmd is smaller than *ATarMdTarDynCtl\n_x000D_3.) LOCAA_s_LgtCtlA_ADmd is greater than ASOPOT_s_ATqDmd\n_x000D_4.) The difference of DSOPRE_s_DrvPed_ADrg and ASOPOT_s_ATqDmd divided by VMMP_c_TiSmpl is smaller then VMMP_LOCADF_p_LgtCtlA_AGrdMaxIncEmgcy\n_x000D_5.) *FlgRstctAGrdIncTracCtl is false\n_x000D_THEN:\n_x000D_LOCADF_s_LgtCtlA_AGrdMaxInc is the maximum of LOCAA_s_LgtCtlA_AGrdMaxInc and the maximum of zero and the difference of DSOPRE_s_DrvPed_ADrg and ASOPOT_s_ATqDmd divided by VMMP_c_TiSmpl",
"Type": "Functional",
"Status": "Released",
"Summary": "",
"Relevant": "yes",
"column_12": "",
"Foreign ID": "1245118",
"Description": "IF[AND(1,2,3,4,5)]\n_x000D_1.) LOCAA_s_LgtCtlA_MdTarDyn is\n_x000D_VMMP_LOC_c_LgtCtlA_MdTarDynDynEmgcyFct\n_x000D_2.) ASOPOT_s_ATqDmd is smaller than *ATarMdTarDynCtl\n_x000D_3.) LOCAA_s_LgtCtlA_ADmd is greater than ASOPOT_s_ATqDmd\n_x000D_4.) The difference of DSOPRE_s_DrvPed_ADrg and ASOPOT_s_ATqDmd divided by VMMP_c_TiSmpl is smaller then VMMP_LOCADF_p_LgtCtlA_AGrdMaxIncEmgcy\n_x000D_5.) *FlgRstctAGrdIncTracCtl is false\n_x000D_THEN:\n_x000D_LOCADF_s_LgtCtlA_AGrdMaxInc is the maximum of LOCAA_s_LgtCtlA_AGrdMaxInc and the maximum of zero and the difference of DSOPRE_s_DrvPed_ADrg and ASOPOT_s_ATqDmd divided by VMMP_c_TiSmpl",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} | |
| 98 | 20198782 | Functional | Released | yes | True | IF[AND(1,2,3,4,5)] 1.) LOCAA_s_LgtCtlA_MdTarDyn is VMMP_LOC_c_LgtCtlA_MdTarDynDynEmgcyFct 2.) ASOPOT_s_ATqDmd is smaller than *IF[AND(1,2,3,4,5)] 1.) LOCAA_s_LgtCtlA_MdTarDyn is VMMP_LOC_c_LgtCtlA_MdTarDynDynEmgcyFct 2.) ASOPOT_s_ATqDmd is smaller than *ATarMdTarDynCtl 3.) LOCADF_m_LgtCtlA_ADmd is greater than ASOPOT_s_ATqDmd 4.) The difference of DSOPRE_s_DrvPed_ADrg and ASOPOT_s_ATqDmd divided by VMMP_c_TiSmpl is smaller then VMMP_LOCADF_p_LgtCtlA_AGrdMaxIncEmgcy 5.) *FlgRstctAGrdIncTracCtl is false THEN: LOCADF_s_LgtCtlA_AGrdMaxInc is the maximum of LgtCtlA_AGrdMaxIncTrj and the maximum of zero and the difference of DSOPRE_s_DrvPed_ADrg and ASOPOT_s_ATqDmd divided by VMMP_c_TiSmpl Raw{
"ID": "20198782",
"ASIL": " QM",
"Text": "IF[AND(1,2,3,4,5)]\n_x000D_1.) LOCAA_s_LgtCtlA_MdTarDyn is\n_x000D_VMMP_LOC_c_LgtCtlA_MdTarDynDynEmgcyFct\n_x000D_2.) ASOPOT_s_ATqDmd is smaller than *ATarMdTarDynCtl\n_x000D_3.) LOCADF_m_LgtCtlA_ADmd is greater than ASOPOT_s_ATqDmd\n_x000D_4.) The difference of DSOPRE_s_DrvPed_ADrg and ASOPOT_s_ATqDmd divided by VMMP_c_TiSmpl is smaller then VMMP_LOCADF_p_LgtCtlA_AGrdMaxIncEmgcy\n_x000D_5.) *FlgRstctAGrdIncTracCtl is false\n_x000D_THEN:\n_x000D_LOCADF_s_LgtCtlA_AGrdMaxInc is the maximum of LgtCtlA_AGrdMaxIncTrj and the maximum of zero and the difference of DSOPRE_s_DrvPed_ADrg and ASOPOT_s_ATqDmd divided by VMMP_c_TiSmpl",
"Type": "Functional",
"Status": "Released",
"Summary": "",
"Relevant": "yes",
"column_12": "",
"Foreign ID": "",
"Description": "IF[AND(1,2,3,4,5)]\n_x000D_1.) LOCAA_s_LgtCtlA_MdTarDyn is\n_x000D_VMMP_LOC_c_LgtCtlA_MdTarDynDynEmgcyFct\n_x000D_2.) ASOPOT_s_ATqDmd is smaller than *ATarMdTarDynCtl\n_x000D_3.) LOCADF_m_LgtCtlA_ADmd is greater than ASOPOT_s_ATqDmd\n_x000D_4.) The difference of DSOPRE_s_DrvPed_ADrg and ASOPOT_s_ATqDmd divided by VMMP_c_TiSmpl is smaller then VMMP_LOCADF_p_LgtCtlA_AGrdMaxIncEmgcy\n_x000D_5.) *FlgRstctAGrdIncTracCtl is false\n_x000D_THEN:\n_x000D_LOCADF_s_LgtCtlA_AGrdMaxInc is the maximum of LgtCtlA_AGrdMaxIncTrj and the maximum of zero and the difference of DSOPRE_s_DrvPed_ADrg and ASOPOT_s_ATqDmd divided by VMMP_c_TiSmpl",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} | |
| 99 | 36890408 | Functional | Released | yes | True | IF[AND(1,2,3,4,5)] 1.) LOCAA_s_LgtCtlA_MdTarDyn is VMMP_LOC_c_LgtCtlA_MdTarDynDynEmgcyFct 2.) ASOPOT_s_ATqDmd is smaller than *IF[AND(1,2,3,4,5)] 1.) LOCAA_s_LgtCtlA_MdTarDyn is VMMP_LOC_c_LgtCtlA_MdTarDynDynEmgcyFct 2.) ASOPOT_s_ATqDmd is smaller than *ATarMdTarDynCtl 3.) LOCADF_m_LgtCtlA_ADmd is greater than ASOPOT_s_ATqDmd 4.) The difference of DSOPRE_s_DrvPed_ADrg and ASOPOT_s_ATqDmd divided by VMMP_c_TiSmpl is smaller then VMMP_LOCADF_p_LgtCtlA_AGrdMaxIncEmgcy 5.) *FlgRstctAGrdIncTracCtl is false THEN: LOCADF_s_LgtCtlA_AGrdMaxInc is the maximum of LgtCtlA_AGrdMaxInc and the maximum of zero and the difference of DSOPRE_s_DrvPed_ADrg and ASOPOT_s_ATqDmd divided by VMMP_c_TiSmpl Raw{
"ID": "36890408",
"ASIL": " QM",
"Text": "IF[AND(1,2,3,4,5)]\n_x000D_1.) LOCAA_s_LgtCtlA_MdTarDyn is\n_x000D_VMMP_LOC_c_LgtCtlA_MdTarDynDynEmgcyFct\n_x000D_2.) ASOPOT_s_ATqDmd is smaller than *ATarMdTarDynCtl\n_x000D_3.) LOCADF_m_LgtCtlA_ADmd is greater than ASOPOT_s_ATqDmd\n_x000D_4.) The difference of DSOPRE_s_DrvPed_ADrg and ASOPOT_s_ATqDmd divided by VMMP_c_TiSmpl is smaller then VMMP_LOCADF_p_LgtCtlA_AGrdMaxIncEmgcy\n_x000D_5.) *FlgRstctAGrdIncTracCtl is false\n_x000D_THEN:\n_x000D_LOCADF_s_LgtCtlA_AGrdMaxInc is the maximum of LgtCtlA_AGrdMaxInc and the maximum of zero and the difference of DSOPRE_s_DrvPed_ADrg and ASOPOT_s_ATqDmd divided by VMMP_c_TiSmpl",
"Type": "Functional",
"Status": "Released",
"Summary": "",
"Relevant": "yes",
"column_12": "",
"Foreign ID": "",
"Description": "IF[AND(1,2,3,4,5)]\n_x000D_1.) LOCAA_s_LgtCtlA_MdTarDyn is\n_x000D_VMMP_LOC_c_LgtCtlA_MdTarDynDynEmgcyFct\n_x000D_2.) ASOPOT_s_ATqDmd is smaller than *ATarMdTarDynCtl\n_x000D_3.) LOCADF_m_LgtCtlA_ADmd is greater than ASOPOT_s_ATqDmd\n_x000D_4.) The difference of DSOPRE_s_DrvPed_ADrg and ASOPOT_s_ATqDmd divided by VMMP_c_TiSmpl is smaller then VMMP_LOCADF_p_LgtCtlA_AGrdMaxIncEmgcy\n_x000D_5.) *FlgRstctAGrdIncTracCtl is false\n_x000D_THEN:\n_x000D_LOCADF_s_LgtCtlA_AGrdMaxInc is the maximum of LgtCtlA_AGrdMaxInc and the maximum of zero and the difference of DSOPRE_s_DrvPed_ADrg and ASOPOT_s_ATqDmd divided by VMMP_c_TiSmpl",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} | |
| 100 | 16653027 | Functional | Released | yes | True | IF[AND(1,2)] 1.) HMSOP_s_StHldAcv is equal to VMMP_HMSHC_c_StHldAcvDrvOff 2.) *FlgRstctAGrdIncTracCtl is false THEN: LOCADF_s_IF[AND(1,2)] 1.) HMSOP_s_StHldAcv is equal to VMMP_HMSHC_c_StHldAcvDrvOff 2.) *FlgRstctAGrdIncTracCtl is false THEN: LOCADF_s_LgtCtlA_AGrdMaxInc shall show the maximum of the value for LOCADF_s_LgtCtlA_AGrdMaxInc specified above* and the output of the 1D interpolation parameter with p1 = VMMP_LOCADF_DrvOffGrd_p1_AGrdMaxInc, px = VMMP_LOCADF_DrvOffGrd_px_ADmdDif, and the x-input value is the last value of LOCADF_s_LgtCtlA_ADmd without saturation *specified above are requirement VMMP_LOC_LOCADF-16653023 VMMP_LOC_LOCADF-20198676 VMMP_LOC_LOCADF-36890352 VMMP_LOC_LOCADF-16653024 VMMP_LOC_LOCADF-20198678 VMMP_LOC_LOCADF-36890365 VMMP_LOC_LOCADF-16653025 VMMP_LOC_LOCADF-20198685 VMMP_LOC_LOCADF-36890397 VMMP_LOC_LOCADF-16653026 VMMP_LOC_LOCADF-20198782 VMMP_LOC_LOCADF-36890408 Raw{
"ID": "16653027",
"ASIL": " QM",
"Text": "IF[AND(1,2)]\n_x000D_1.) HMSOP_s_StHldAcv is equal to VMMP_HMSHC_c_StHldAcvDrvOff\n_x000D_2.) *FlgRstctAGrdIncTracCtl is false\n_x000D_THEN:\n_x000D_LOCADF_s_LgtCtlA_AGrdMaxInc shall show the maximum of the value for LOCADF_s_LgtCtlA_AGrdMaxInc specified above* and the output of the 1D interpolation parameter with\n_x000D_p1 = VMMP_LOCADF_DrvOffGrd_p1_AGrdMaxInc,\n_x000D_px = VMMP_LOCADF_DrvOffGrd_px_ADmdDif,\n_x000D_and the x-input value is the last value of LOCADF_s_LgtCtlA_ADmd without saturation\n_x000D_ \n_x000D_*specified above are requirement\n_x000D_VMMP_LOC_LOCADF-16653023\n_x000D_VMMP_LOC_LOCADF-20198676\n_x000D_VMMP_LOC_LOCADF-36890352\n_x000D_VMMP_LOC_LOCADF-16653024\n_x000D_VMMP_LOC_LOCADF-20198678\n_x000D_VMMP_LOC_LOCADF-36890365\n_x000D_VMMP_LOC_LOCADF-16653025\n_x000D_VMMP_LOC_LOCADF-20198685\n_x000D_VMMP_LOC_LOCADF-36890397\n_x000D_VMMP_LOC_LOCADF-16653026\n_x000D_VMMP_LOC_LOCADF-20198782\n_x000D_VMMP_LOC_LOCADF-36890408",
"Type": "Functional",
"Status": "Released",
"Summary": "",
"Relevant": "yes",
"column_12": "",
"Foreign ID": "1380358",
"Description": "IF[AND(1,2)]\n_x000D_1.) HMSOP_s_StHldAcv is equal to VMMP_HMSHC_c_StHldAcvDrvOff\n_x000D_2.) *FlgRstctAGrdIncTracCtl is false\n_x000D_THEN:\n_x000D_LOCADF_s_LgtCtlA_AGrdMaxInc shall show the maximum of the value for LOCADF_s_LgtCtlA_AGrdMaxInc specified above* and the output of the 1D interpolation parameter with\n_x000D_p1 = VMMP_LOCADF_DrvOffGrd_p1_AGrdMaxInc,\n_x000D_px = VMMP_LOCADF_DrvOffGrd_px_ADmdDif,\n_x000D_and the x-input value is the last value of LOCADF_s_LgtCtlA_ADmd without saturation\n_x000D_ \n_x000D_*specified above are requirement\n_x000D_VMMP_LOC_LOCADF-16653023\n_x000D_VMMP_LOC_LOCADF-20198676\n_x000D_VMMP_LOC_LOCADF-36890352\n_x000D_VMMP_LOC_LOCADF-16653024\n_x000D_VMMP_LOC_LOCADF-20198678\n_x000D_VMMP_LOC_LOCADF-36890365\n_x000D_VMMP_LOC_LOCADF-16653025\n_x000D_VMMP_LOC_LOCADF-20198685\n_x000D_VMMP_LOC_LOCADF-36890397\n_x000D_VMMP_LOC_LOCADF-16653026\n_x000D_VMMP_LOC_LOCADF-20198782\n_x000D_VMMP_LOC_LOCADF-36890408",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} | |
| 101 | 16653028 | Functional | Released | yes | True | LOCADF_s_LgtCtlA_AGrdMaxDec is LOCAA_s_LgtCtlA_AGrdMaxDec if not required differently in this chapter Gradient_selection_CtlLOCADF_s_LgtCtlA_AGrdMaxDec is LOCAA_s_LgtCtlA_AGrdMaxDec if not required differently in this chapter Gradient_selection_Ctl Raw{
"ID": "16653028",
"ASIL": " QM",
"Text": "LOCADF_s_LgtCtlA_AGrdMaxDec is LOCAA_s_LgtCtlA_AGrdMaxDec if not required differently in this chapter Gradient_selection_Ctl",
"Type": "Functional",
"Status": "Released",
"Summary": "",
"Relevant": "yes",
"column_12": "",
"Foreign ID": "1218940",
"Description": "LOCADF_s_LgtCtlA_AGrdMaxDec is LOCAA_s_LgtCtlA_AGrdMaxDec if not required differently in this chapter Gradient_selection_Ctl",
"Vehicle Launch": "",
"Vehicle Platform": "E³ 1.2"
} |