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Building Secure Automotive IoT Applications

You're reading from   Building Secure Automotive IoT Applications Developing robust IoT solutions for next-gen automotive software

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Product type Paperback
Published in Aug 2024
Publisher Packt
ISBN-13 9781835465509
Length 358 pages
Edition 1st Edition
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Authors (4):
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Dr. Dennis Kengo Oka Dr. Dennis Kengo Oka
Author Profile Icon Dr. Dennis Kengo Oka
Dr. Dennis Kengo Oka
Jeff Yost Jeff Yost
Author Profile Icon Jeff Yost
Jeff Yost
Sharanukumar Nadahalli Sharanukumar Nadahalli
Author Profile Icon Sharanukumar Nadahalli
Sharanukumar Nadahalli
Ram Prasad Bojanki Ram Prasad Bojanki
Author Profile Icon Ram Prasad Bojanki
Ram Prasad Bojanki
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Toc

Table of Contents (22) Chapters Close

Preface 1. Part 1: Introduction to Automotive IoT
2. Chapter 1: Automotive Technology Trends FREE CHAPTER 3. Chapter 2: Introducing Automotive IoT Use Cases 4. Part 2: Vehicle Architectures
5. Chapter 3: Vehicle Architecture and Frameworks 6. Chapter 4: Vehicle Diagnostics 7. Chapter 5: Next Wave of Vehicle Diagnostics 8. Part 3: Secure Development for Automotive IoT
9. Chapter 6: Exploring Secure Development Processes for Automotive IoT 10. Chapter 7: Establishing a Secure Software Development Platform 11. Chapter 8: Securing the Software Supply Chain 12. Part 4: Automotive IoT Application Life Cycle
13. Chapter 9: System Design of an Automotive IoT Application 14. Chapter 10: Developing an Automotive IoT Application 15. Chapter 11: Deploying and Maintaining an Automotive IoT Application 16. Part 5: Automotive Software Insights
17. Chapter 12: Processes and Practices 18. Chapter 13: Embedded Automotive IoT Development 19. Chapter 14: Final Thoughts 20. Index 21. Other Books You May Enjoy

Additional automotive processes and practices

ASPICE and functional safety are the biggest two processes that are used in automotive software development. However, many other smaller processes and practices can be used to aid in software development. This section will cover four smaller tools that focus on problem prevention and problem-solving.

DFMEA

Design Failure Mode and Effects Analysis (DFMEA) is a process, tool, practice, or approach that’s used to reduce and prevent design failures. It is a specialization of FMEA and doesn’t just apply to software engineering – it is an excellent tool that can be used by software designers. It’s a structured approach that considers what failure modes may exist in a design, prioritizes them, and makes design updates as appropriate based on how they’ve been identified and prioritized. It’s similar to risk management in terms of how it identifies, prioritizes, and specifies actions to be taken.

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