Accelerate your journey of securing safety-critical automotive systems through practical and standard-compliant methods
The Automotive Cybersecurity Engineering Handbook introduces the critical technology of securing automotive systems, with a focus on compliance with industry standards like ISO 21434 and UNECE REG 155-156. This book provides automotive engineers and security professionals with the practical knowledge needed to integrate cybersecurity into their development processes, ensuring vehicles remain resilient against cyber threats. Whether you're a functional safety engineer, a software developer, or a security expert transitioning to the automotive domain, this book serves as your roadmap to implementing effective cybersecurity practices within automotive systems.
The purpose of this book is to demystify automotive cybersecurity and bridge the gap between safety-critical systems and cybersecurity requirements. It addresses the needs of professionals who are expected to make their systems secure without sacrificing time, quality, or safety. Unlike other resources, this book offers a practical, real-world approach, focusing on the integration of security into the engineering process, using existing frameworks and tools.
By the end of this book, readers will understand the importance of automotive cybersecurity, how to perform threat modeling, and how to deploy robust security controls at various layers of a vehicle's architecture.
This book is for automotive engineers, cybersecurity professionals, and those transitioning into automotive security, including those familiar with functional safety and looking to integrate cybersecurity into vehicle development processes.
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Dr. Ahmad MK Nasser is an automotive cybersecurity architect with a long experience in securing safety-critical systems. He started his career as a software engineer, building automotive network drivers, diagnostics protocols, and flash programming solutions. This naturally led him into the field of automotive cybersecurity, where he designed secure firmware solutions for various microcontrollers and SoCs, defined secure hardware and software architectures of embedded systems, and performed threat analysis of numerous vehicle architectures, ECUs, and smart sensors. Ahmad holds a B.S. and an M.S. in electrical and computer engineering from Wayne State University, as well as a Ph.D. in computer science from the University of Michigan in Dearborn. He is currently a principal security architect for NVIDIA’s autonomous driving software platform.
Accelerate your journey of securing safety-critical automotive systems through practical and standard-compliant methods Key Features - Explore threat landscape and vulnerabilities facing the modern automotive systems - Apply security controls to all vehicle layers for mitigating cybersecurity risks in automotives - Find out how systematic secure engineering mitigates cyber risks while ensuring compliance - Purchase of the print or Kindle book includes a free PDF eBook Book Description Replete with exciting challenges, automotive cybersecurity is an emerging domain, and cybersecurity is a foundational enabler for current and future connected vehicle features. This book addresses the severe talent shortage faced by the industry in meeting the demand for building cyber-resilient systems by consolidating practical topics on securing automotive systems to help automotive engineers gain a competitive edge. The book begins by exploring present and future automotive vehicle architectures, along with relevant threats and the skills essential to addressing them. You'll then explore cybersecurity engineering methods, focusing on compliance with existing automotive standards while making the process advantageous. The chapters are designed in a way to help you with both the theory and practice of building secure systems while considering the cost, time, and resource limitations of automotive engineering. The concluding chapters take a practical approach to threat modeling automotive systems and teach you how to implement security controls across different vehicle architecture layers. By the end of this book, you'll have learned effective methods of handling cybersecurity risks in any automotive product, from single libraries to entire vehicle architectures. What you will learn - Get to grips with present and future vehicle networking technologies - Explore basic concepts for securing automotive systems - Discover diverse approaches to threat modeling of systems - Conduct efficient threat analysis and risk assessment (TARA) for automotive systems using best practices - Gain a comprehensive understanding of ISO/SAE 21434's cybersecurity engineering approach - Implement cybersecurity controls for all vehicle life cycles - Master ECU-level cybersecurity controls Who this book is for If you're an engineer wondering where to get started in the field of automotive cybersecurity or trying to understand which security standards apply to your product and how, then this is the book for you. This book is also for experienced engineers looking for a practical approach to automotive cybersecurity development that can be achieved within a reasonable time frame while leveraging established safety and quality processes. Familiarity with basic automotive development processes across the V-model will help you make the most of this book. Table of Contents - Introducing the Vehicle Electrical/Electronic Architecture - Cybersecurity Basics for Automotive Use Cases - Threat Landscape against Vehicle Components - Exploring the Landscape of Automotive Cybersecurity Standards - Taking a Deep Dive into ISO/SAE21434 - Interactions Between Functional Safety and Cybersecurity - A Practical Threat Modeling Approach for Automotive Systems - Vehicle-Level Security Controls - ECU-Level Security Controls
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