Systems, Functions and Safety: A Flipped Approach to Design for Safety

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This textbook provides up-to-date content in the fields of system engineering, system safety and functional safety, with up-to-date examples from the automotive, industrial and aerospace domains, with respect to the growing complexity of the field and the increased utilization of complex hardware and software in vehicle designs. The book covers practical functional safety insights concerning the required standards (e.g. IEC 61508, IEC 62061, ISO 13849, ISO 26262), but also inherent system safety process as a key factor towards the mitigation of systematic faults. Readers will be equipped with a broad understanding of safety and functional safety, with balanced theoretical and practical views in this area.

The book covers the specific topics of introduction to system engineering, overall system safety and its relation to functional safety. Functional safety is introduced in all the required concepts, terminology and safety analysis methods. Basic fault-tolerance concepts are covered, including the design considerations to achieve functional safety. The book also gives an introduction to the required system safety processes and the applications of relevant functional safety standards.

Author(s): Milan Z. Bjelica
Publisher: Springer
Year: 2023

Language: English
Pages: 195
City: Cham

A Letter From Your Instructor
Acknowledgement
Contents
Chapter 1: Safety-Critical Systems
Introduction
Video Lesson
Lecture Notes
Exercise 1
Exercise 1 Template
Exercise 1 Sample Solutions
Solution 1
Solution 2
Solution 3
Solution 4
Key Recap Questions
Self-assessment
Self-assessment Key
Chapter 2: System Requirements and Functions
Introduction
Video Lesson
Lecture Notes
Exercise 2
Exercise 2 Template
Exercise 2 Sample Solutions
Solution 1
Solution 2
Solution 3
Solution 4
Key Recap Questions
Self-assessment
Self-assessment Key
Chapter 3: System Safety
Introduction
Video Lesson
Lecture Notes
Calculation Examples
Task 1
Exercise 3
Exercise 3 Template
Exercise 3 Sample Solutions
Solution 1
Solution 2
Solution 3
Solution 4
Key Recap Questions
Self-assessment
Self-assessment Key
Chapter 4: System Safety Process
Introduction
Video Lesson
Lecture Notes
Exercise 4
Exercise 4 Template
Exercise 4 Sample Solutions
Solution 1
Solution 2
Solution 3
Solution 4
Key Recap Questions
Self-assessment
Self-assessment Key
Untitled
Chapter 5: Functional Safety
Introduction
Video Lesson
Lecture Notes
Exercise 5
Exercise 5 Sample Solutions
Solution 1
Solution 2
Solution 3
Solution 4
Key Recap Questions
Self-assessment
Self-assessment Key
Chapter 6: Defining Safety Functions
Introduction
Video Lesson
Lecture Notes
Your First Safety Project!
Required Output
Submission Deadline
Assessment
Sample Solution to the Project
Chapter 7: Safety Integrity and Random Failures
Introduction
Video Lesson
Lecture Notes
Calculation Examples
Task 1
Task 2
Exercise 7
Exercise 7 Solution
Key Recap Questions
Self-assessment
Self-assessment Key
Chapter 8: Safety Integrity of Composite Systems
Introduction
Video Lesson
Lecture Notes
Calculation Examples
Task 1
Task 2
Exercise 8
Exercise 8 Sample Solutions
Solution 1
Solution 2
Solution 3
Solution 4
Key Recap Questions
Self-assessment
Self-assessment Key
Chapter 9: Safety Integrity Improvement Methods
Introduction
Video Lesson
Lecture Notes
Calculation Examples
Task 1
Task 2
Task 3
Exercise 9
Exercise 9 Solution
Key Recap Questions
Self-assessment
Self-assessment Key
Chapter 10: Proving the Safety Integrity
Introduction
Video Lesson
Lecture Notes
Calculation Examples
Task 1
Task 2
Exercise 10
Exercise 10 Solution
Key Recap Questions
Self-assessment
Self-assessment Key
Chapter 11: Practical SIL Calculation
Introduction
Video Lesson
Lecture Notes
Now Try for Yourself!
Required Output
Assessment
Sample Solution to the Project
Required Evidence for the Safety Case
Architectural Block Diagram
Reliability Block Diagram
Chapter 12: System Safety Checklist
Video Lesson
Lecture Notes
Self-assessment
Self-assessment Key
Bibliography
Index