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Duration 14 hours
Course Outline
Introduction to SOTIF and ISO/PAS 21448:2019
- Background and evolution of the standard
- Comparative overview of ISO 26262 and ISO/PAS 21448
- Scope and objectives of SOTIF
Key Concepts and Definitions
- Safety of the Intended Functionality (SOTIF)
- Distinguishing functional safety from SOTIF
- Core terms: Hazard, Triggering Events, Safe State, and Unsafe State
Overview of the SOTIF Process and Framework
- Stages within the SOTIF life cycle
- Interplay between hazard analysis and risk assessment (HARA)
- Concepts of controllability and situational awareness
Identification and Classification of Hazards
- Potential hazards associated with ADAS and automated driving
- Case studies and examples of functional insufficiencies
- Triggering events in real-world scenarios
Hazard Analysis and Risk Assessment (HARA)
- Techniques for identifying and evaluating risks
- Managing unknown and foreseeable hazards
- Selecting appropriate risk reduction measures
Design and Implementation for SOTIF Compliance
- Safety-focused system architecture
- Considerations for software and hardware development
- Integrating safety requirements into design phases
Verification and Validation Techniques
- Testing strategies: simulation, on-road trials, and field tests
- Methods for detecting systematic and random failures
- Validating intended functionality in edge cases
Monitoring and Continuous Improvement
- Techniques for real-time safety system monitoring
- Leveraging field data for system refinement
- Post-deployment safety strategies
Documentation and Reporting Requirements
- Standards for SOTIF process documentation
- Key deliverables: Safety plan, safety case, and hazard reports
- Stakeholder communication and regulatory compliance
SOTIF in Practice: Case Studies and Best Practices
- Analysis of SOTIF implementations in ADAS and autonomous systems
- Lessons drawn from safety-critical incidents
- Best practices for sustaining SOTIF compliance
Future Trends and the Role of SOTIF in Autonomous Vehicles
- Evolution of standards and regulatory frameworks
- Trends in autonomous driving and safety technologies
- Alignment with other safety-related standards (ISO 26262, UNECE WP.29)
Requirements
- Fundamental understanding of automotive systems
- Basic knowledge of systems engineering processes and software development lifecycles
Target Audience
- Automotive safety engineers
- Systems and software engineers
- Functional safety managers
- Automotive project managers
- Quality management professionals
Testimonials (2)
Theory followed by practical examples and exercices. Job well done!
Vincenzo Delle Donne - Department of National Defence
Course - ISO 37301 Compliance Management System
the expertise & knowledge of the trainer