Length: 2 Days
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Analysis of Safety Architecture with Safety and Security Requirements 

Analysis of Safety Architecture with Safety and Security Requirements is a 2-day short course Integrating ISO 15288 with Safety and Cybersecurity Standards (ISO 26262 and ISO 21434) for Systems Engineering,” provides a comprehensive understanding of ISO 15288 and its seamless integration with safety and cybersecurity standards.

  1. processes. Emphasis on how this standard guides the overall process of systems engineering, including planning, design, development, production, operation, and decommissioning.
  2. Safety Standards – ISO 26262: Introduction to the automotive industry’s functional safety standard. Analyzing how it applies to all the life cycle stages of automotive systems, from concept to decommissioning, especially focusing on hazard analysis and risk assessment.
  3. Cybersecurity Standards – ISO 21434: Diving into the cybersecurity aspects specific to automotive systems. Understanding how to manage cybersecurity risks related to the engineering of electrical and electronic automotive systems.

It is designed for systems engineers, safety engineers, cybersecurity experts, project managers, and quality assurance professionals seeking to enhance their knowledge and skills in developing systems that meet the highest safety and cybersecurity standards. In the ever-evolving landscape of complex systems development, the integration of standards is crucial to ensure safety, security, and compliance.

Learning Objectives:

Upon completion of this course, participants will be able to:

  1. Understand the fundamentals of ISO 15288 for Systems Engineering.
  2. Apply ISO 15288 processes to plan and manage complex systems engineering projects.
  3. Learn about ISO 15288 standard relates to the Systems and Software Engineering — System Life Cycle Processes.
  4. Discuss the framework for a Quality Management System (QMS) focusing on the life cycle processes of systems, including software systems.
  5. Create and maintain comprehensive systems engineering documentation.
  6. Comprehend the importance of integrating ISO 15288 with safety and cybersecurity standards (ISO 26262 and ISO 21434).
  7. Identify key processes and activities in ISO 15288 and its relationship with safety and cybersecurity.
  8. Apply best practices for effectively integrating ISO 15288 with ISO 26262 and ISO 21434.
  9. Assess the impact of integrated systems engineering on safety and cybersecurity.

Target Audience:

  • Systems Engineers
  • Safety Engineers
  • Cybersecurity Engineers
  • Project Managers
  • Quality Assurance Professionals
  • Anyone involved in the design and development of complex systems

Course Agenda:

Session 1: Introduction to ISO 15288

  • Overview of ISO 15288 and its significance in systems engineering.
  • Key principles and concepts in ISO 15288.
  • Key terminology and definitions within ISO 15288: Scope, purpose, and structure.
  • Relationship between ISO 15288 and other standards.
  • Mapping ISO 15288 to the systems engineering lifecycle.

Session 2: ISO 15288 Processes

  • Detailed exploration of ISO 15288 processes and activities.
  • Mapping ISO 15288 processes to the systems engineering lifecycle.
  • Case studies demonstrating the application of ISO 15288 processes.
  • Planning systems engineering activities using ISO 15288.
  • Roles and responsibilities in systems engineering.
  • Risk management and quality assurance in systems engineering.
  • Creating and maintaining documentation in compliance with ISO 15288.
  • Effective communication within cross-functional teams.
  • Configuration management and change control.
  • Detailed exploration of ISO 15288 processes and activities.
  • Case studies demonstrating the application of ISO 15288.

 

Session 3: Integration of ISO 15288 with Safety Standards and Engineering best practices

  • Introduction to ISO 26262 for automotive functional safety.
  • Understanding safety lifecycle and its integration with ISO 15288.
  • Hands-on exercises on aligning systems engineering with safety standards.
    • Harmonizing Processes
    • Risk Management
    • Safety-Critical Systems Development
    • Documentation and Traceability
    • Quality Assurance and Audits
    • Training and Competence
    • Continuous Improvement
    • Configuration Management
    • Emergency Preparedness and Response

Session 4: Integration of ISO 15288 with Cybersecurity Standards and Engineering best practices

  • Introduction to ISO 21434 for automotive cybersecurity.
  • Key cybersecurity concepts and terminology.
  • Integration points between ISO 21434 and ISO 15288.
  • Deep dive into cybersecurity engineering processes.
  • Identifying threats and vulnerabilities in systems.
  • Integrating cybersecurity risk assessment into systems engineering.

Session 5: Practical Integration

  • Practical workshops on integrating ISO 15288, ISO 26262, and ISO 21434.
  • Group discussions on challenges and solutions in the integration process.
  • Real-world case studies showcasing successful integration outcomes.

Session 6: Impact Assessment

  • Assessing the impact of integrated systems engineering on safety and cybersecurity.
  • Strategies for maintaining compliance with evolving standards.
  • Preparing for audits and certification processes.

 

Workshop 1 – Implementing a QMS based on ISO 15288

  • Process Management
  • Quality Assurance
  • Continuous Improvement
  • Risk Management
  • Documentation, Modeling and Records
  • Stakeholder Involvement
  • Configuration Management
  • Verification and Validation

Workshop 2: Integrating ISO 15288 with focus on systems and software engineering life cycle processes

  • Alignment with Cybersecurity Frameworks
  • Cybersecurity Risk Management
  • Secure Design Principles
  • Cybersecurity Requirements Specification
  • Testing and Validation for Security
  • Incident Response and Recovery Planning
  • Continuous Monitoring and Improvement
  • Supply Chain Security
  • Documentation and Knowledge Management
  • Stakeholder Engagement

Course Conclusion and Q&A:

  • Recap of key takeaways from the course.
  • Open Q&A session for participants to clarify doubts and seek guidance on specific integration challenges.

Course Materials:

Participants will receive course materials, including presentation slides, reference guides, and relevant standards documents.

Assessment:

Participants will be evaluated through group discussions, hands-on exercises, and a final assessment to ensure understanding and proficiency in integrating ISO 15288 with safety and cybersecurity standards.

 

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