
ADAS Scenario Simulation Analysis & Validation
Validate ADAS simulation scenarios and generate safety compliance reports
What You Can Do
You can evaluate simulation scenarios against functional safety and SOTIF requirements, identify untested edge cases and high-risk operational design domains, map failure modes to root causes, and generate traceability matrices linking requirements to validation results. This skill transforms raw simulation data into defensible technical documentation that demonstrates test completeness and readiness for real-world deployment.
Features
Evaluate whether simulated test cases adequately cover functional requirements, failure modes, and ISO 26262/SOTIF compliance
Identify untested edge cases, high-risk ODD scenarios, and coverage blind spots in your test library
Analyze simulation test failures, classify root causes (software bugs, misconfiguration, legitimate edge cases), and trace to required design changes
Create requirement-to-scenario-to-result linkages for audit trails and regulatory submissions
Produce clear, structured validation documentation with metrics, evidence, and recommendations for stakeholders
Generate evidence packages documenting scenario completeness for over-the-air update approval
Identify high-priority scenarios requiring real-world validation based on risk and coverage gaps
Assess whether simulation scenarios adequately stress-test intended operational design domain limits
Example Output
Scenario Coverage Report
- Test Case: Lane Change in Rain at 80 km/h
- Coverage Status: ✓ Complete
- Edge Cases Identified: Vehicle-to-vehicle communication latency >500ms, water spray obstruction
- Risk Level: Medium
- Recommendation: Add 3 additional failure mode scenarios
Safety Gap Analysis
- Missing Scenarios (5 identified):
- Pedestrian jaywalking in low-light conditions with motion blur
- Sensor fusion disagreement (LiDAR vs. Camera classification)
- Road construction sign occlusion
- Estimated Coverage: 78% → Target 95%
- Priority: High — Defer OTA deployment until gaps closed
Traceability Matrix Excerpt | Requirement | Test Scenario | Simulation Result | Status | | ISO 26262 ASIL-D Pedestrian Detection | Ped-Rain-LowLight-01 | PASS (±2cm accuracy) | ✓ Verified |
What's Included
- SKILL.md: Core instruction file with scenario assessment methodology
- Scenario Evaluation Checklist: ISO 26262/SOTIF requirements mapping template
- Gap Analysis Framework: Structured template for identifying coverage blind spots and ODD boundary risks
- Traceability Matrix Template: Requirements → Test Scenarios → Validation Results linkage format
- Technical Report Template: Executive summary, methodology, findings, and regulatory compliance sections
Who It's For
- ADAS/Autonomous Vehicle Engineers — Validate simulation test completeness and identify missing safety scenarios
- Safety & Validation Engineers — Generate compliance documentation and evidence packages for regulatory submissions
- Test & Simulation Architects — Assess scenario library coverage and prioritize real-world validation efforts
- Quality Assurance Leads — Review failure analysis and map defects to root causes and design iterations
- Regulatory Affairs Specialists — Develop traceability matrices and safety case evidence for OTA updates
Best For
- Pre-deployment simulation test plan reviews and coverage gap analysis
- Failure mode root cause analysis and design change tracking
- ISO 26262 / SOTIF / SAE J3016 compliance documentation and evidence generation
- Operational Design Domain (ODD) boundary stress-testing and edge case identification
- Over-the-air (OTA) update validation packages and regulatory approval support







