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Automotive Cybersecurity Engineering Handbook

You're reading from  Automotive Cybersecurity Engineering Handbook

Product type Book
Published in Oct 2023
Publisher Packt
ISBN-13 9781801076531
Pages 392 pages
Edition 1st Edition
Languages
Author (1):
Dr. Ahmad MK Nasser Dr. Ahmad MK Nasser
Profile icon Dr. Ahmad MK Nasser

Table of Contents (15) Chapters

Preface 1. Part 1:Understanding the Cybersecurity Relevance of the Vehicle Electrical Architecture
2. Chapter 1: Introducing the Vehicle Electrical/Electronic Architecture 3. Chapter 2: Cybersecurity Basics for Automotive Use Cases 4. Chapter 3: Threat Landscape against Vehicle Components 5. Part 2: Understanding the Secure Engineering Development Process
6. Chapter 4: Exploring the Landscape of Automotive Cybersecurity Standards 7. Chapter 5: Taking a Deep Dive into ISO/SAE21434 8. Chapter 6: Interactions Between Functional Safety and Cybersecurity 9. Part 3: Executing the Process to Engineer a Secure Automotive Product
10. Chapter 7: A Practical Threat Modeling Approach for Automotive Systems 11. Chapter 8: Vehicle-Level Security Controls 12. Chapter 9: ECU-Level Security Controls 13. Index 14. Other Books You May Enjoy

Finding synergies and conflicts in the design phase

During the design phase, cybersecurity controls and requirements from the concept level are refined into technical security requirements and architectural elements and interfaces at the software and hardware levels. The refined security and safety requirements need another round of harmonization so that synergies can be identified and conflicts can be eliminated. In this stage, synergies are easier to identify as the mechanisms become more concrete due to requirements being allocated to the components of the architecture. When safety and security objectives overlap, a common strategy is to leverage security mechanisms to satisfy a safety objective and vice versa.

Leveraging safety and security mechanisms

As mentioned previously, safety and security objectives overlap in three main areas:

  • Achieving freedom from interference
  • Protecting data integrity
  • Detecting and recovering from availability faults or attacks
  • ...
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