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Course Outline

Introduction to Functional Safety in Automotive Systems

  • Fundamental concepts of functional safety
  • The significance of ISO 26262 in automotive development
  • Scope and primary objectives of the standard
  • The interplay between hardware, software, and system safety

Overview of ISO 26262 Safety Management Processes

  • Structure and components of ISO 26262
  • Safety lifecycle and associated management activities
  • Roles and responsibilities within safety-focused projects
  • Establishing safety culture and organizational processes

ISO 26262 Compliance and Legal Considerations

  • Key compliance requirements
  • Legal and regulatory impacts of functional safety
  • Documentation and evidence standards
  • Preparing organizations for the adoption of ISO 26262

Functional Safety Concepts and Principles

  • Core terminology in functional safety
  • Defining safety goals and safety requirements
  • Automotive Safety Integrity Levels (ASIL)
  • Concepts of ASIL determination and decomposition

Hazard Analysis and Risk Assessment

  • Identification of hazards in automotive systems
  • Conducting Hazard Analysis and Risk Assessment (HARA)
  • Assessing risk levels and defining safety requirements
  • Formulating safety goals and mitigation strategies

Safety-Oriented System Design

  • Translating safety goals into technical specifications
  • Designing safety concepts and system architectures
  • System-level safety considerations
  • Implementing safety mechanisms and fault handling strategies

Technical Safety Requirements

  • Developing technical safety concepts
  • Hardware and software safety requirements
  • Ensuring traceability between requirements and implementation
  • Planning for verification and validation

Hardware Development for Functional Safety

  • Considerations for hardware design
  • Hardware architectural metrics
  • Techniques for failure analysis
  • Applying safety mechanisms to electronic components

Software Development for Functional Safety

  • Safety-focused software development processes
  • Software architecture and design principles
  • Coding practices for safety-critical systems
  • Approaches to software verification and testing

Supporting Processes and Safety Activities

  • Configuration management
  • Change management
  • Documentation and traceability
  • Tool qualification and confidence in software tools

Verification, Validation, and Safety Assessment

  • Concept verification activities
  • Testing strategies for safety-critical systems
  • Techniques for reviews, analysis, and validation
  • Preparation of safety evidence

Certification and Industry Implementation

  • Overview of ISO 26262 certification approaches
  • Common challenges in implementation
  • Best practices for automotive organizations
  • Applying ISO 26262 in real-world projects

Practical Workshop and Course Review

  • Applying ISO 26262 methods to automotive scenarios
  • Performing safety analysis exercises
  • Reviewing functional safety documentation
  • Summary of key concepts and recommended next steps

Requirements

  • Experience in automotive development.

Audience

  • Engineers
  • Developers
  • Manufacturing professionals
  • Managers
  • Technical leads
  • Quality assurance engineers
  • Technicians
 28 Hours

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