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Automotive Cybersecurity Engineering Handbook

You're reading from   Automotive Cybersecurity Engineering Handbook The automotive engineer's roadmap to cyber-resilient vehicles

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Product type Paperback
Published in Oct 2023
Publisher Packt
ISBN-13 9781801076531
Length 392 pages
Edition 1st Edition
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Author (1):
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Dr. Ahmad MK Nasser Dr. Ahmad MK Nasser
Author Profile Icon Dr. Ahmad MK Nasser
Dr. Ahmad MK Nasser
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Toc

Table of Contents (15) Chapters Close

Preface 1. Part 1:Understanding the Cybersecurity Relevance of the Vehicle Electrical Architecture
2. Chapter 1: Introducing the Vehicle Electrical/Electronic Architecture FREE CHAPTER 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

Threats against external vehicle interfaces

Before diving into real-world threats, let’s first define what a threat is and how it differs from an attack. Simply put, a threat represents the possibility of achieving an adverse effect on the vehicle stakeholders, through the exploitation of a security vulnerability or weakness. For example, an ECU that receives data over an insecure channel is exposed to the threat of data tampering by a threat agent with access to the vehicle network. On the other hand, an attack is the actual exploitation of a vulnerability or a weakness to realize the threat. For example, the threat of vehicle network data tampering can be realized by an attack in which network messages are intercepted, modified, and retransmitted to the target ECU. To derive attacks for a specific threat, it helps to identify the underlying vulnerability or weakness that makes the threat viable, turning the possibility of compromise (threat) into a realized action (attack...

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