Embedded Software Development for Safety-Critical Systems, Second Edition

Regular price €80.99
A01=Chris Hobbs
advanced safety-critical software design
Author_Chris Hobbs
Backward Error Recovery
Bayesian Network
BCI
Branch Coverage
Category=GPQD
Category=UMZ
Cyclomatic Complexity
Discrete Event Simulation
Embedded Software Development
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eq_computing
eq_isMigrated=1
eq_isMigrated=2
eq_nobargain
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Fault Tree
formal verification methods
functional safety engineering
IEC 61508 compliance
Interarrival Times
international standards
ISO 26262 certification
Markov Model
Markov models
Minimum Cut Sets
Mutual Exclusion Algorithm
Petri Net
quantitative risk assessment
Risk Based Testing
Safety Critical Device
Safety Critical Product
Safety Critical Systems
Safety Integrity Levels
safety-critical application
software reliability analysis
software-based system
SOTIF
Static Code Analysis
Stochastic Petri Net
Timed Petri Nets
Unsigned Char
Vice Versa
Virtual Synchrony

Product details

  • ISBN 9780367338855
  • Weight: 580g
  • Dimensions: 156 x 234mm
  • Publication Date: 09 Aug 2019
  • Publisher: Taylor & Francis Ltd
  • Publication City/Country: GB
  • Product Form: Paperback
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This is a book about the development of dependable, embedded software. It is for systems designers, implementers, and verifiers who are experienced in general embedded software development, but who are now facing the prospect of delivering a software-based system for a safety-critical application. It is aimed at those creating a product that must satisfy one or more of the international standards relating to safety-critical applications, including IEC 61508, ISO 26262, EN 50128, EN 50657, IEC 62304, or related standards.

Of the first edition, Stephen Thomas, PE, Founder and Editor of FunctionalSafetyEngineer.com said, "I highly recommend Mr. Hobbs' book."

Chris is a programmer at QNX Software Systems with some 40 years of software development experience. His specialty is "Sufficiently Dependable Software," which is software that meets its dependability requirements with the minimum development effort and risk. In particular, he works with software for safety-critical systems that must meet the requirements of international safety standards such as IEC61508, ISO26262, EN50128 and IEC62304.