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Computer Safety, Reliability, and Security

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Cover of 'Computer Safety, Reliability, and Security'

Table of Contents

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    Book Overview
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    Chapter 1 Informing Assurance Case Review Through a Formal Interpretation of GSN Core Logic
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    Chapter 2 Representing Confidence in Assurance Case Evidence
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    Chapter 3 Safe & Sec Case Patterns
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    Chapter 4 A Comprehensive Safety Lifecycle
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    Chapter 5 An Approach to Assure Dependability Through ArchiMate
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    Chapter 6 Tool Support for Assurance Case Building Blocks, Providing a Helping Hand with CAE
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    Chapter 7 Safety.Lab: Model-Based Domain Specific Tooling for Safety Argumentation
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    Chapter 8 A Safety Condition Monitoring System
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    Chapter 9 Error Type Refinement for Assurance of Families of Platform-Based Systems
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    Chapter 10 Qualitative and Quantitative Analysis of CFTs Taking Security Causes into Account
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    Chapter 11 Sequential Logic for State/Event Fault Trees: A Methodology to Support the Failure Modeling of Cyber Physical Systems
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    Chapter 12 Towards a Framework for Alignment Between Automotive Safety and Security Standards
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    Chapter 13 Reconfiguration Testing for Cooperating Autonomous Agents
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    Chapter 14 A Motion Certification Concept to Evaluate Operational Safety and Optimizing Operating Parameters at Runtime
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    Chapter 15 Approach for Demonstrating Safety for a Collision Avoidance System
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    Chapter 16 Contract Modeling and Verification with FormalSpecs Verifier Tool-Suite - Application to Ansaldo STS Rapid Transit Metro System Use Case
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    Chapter 17 Towards Verification of Multicore Motor-Drive Controllers in Aerospace
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    Chapter 18 FlexRay Robustness Testing Contributing to Automated Safety Certification
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    Chapter 19 Towards Perfectly Scalable Real-Time Systems
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    Chapter 20 Dependable Cyber-Physical Systems with Redundant Consumer Single-Board Linux Computers
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    Chapter 21 A Combined Safety-Hazards and Security-Threat Analysis Method for Automotive Systems
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    Chapter 22 Safety and Security Assessment of Behavioral Properties Using Alloy
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    Chapter 23 Combining MILS with Contract-Based Design for Safety and Security Requirements
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    Chapter 24 Security Analysis of Urban Railway Systems: The Need for a Cyber-Physical Perspective
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    Chapter 25 Sequential and Parallel Attack Tree Modelling
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    Chapter 26 Analysis of Companies Gaps in the Application of Standards for Safety-Critical Software
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    Chapter 27 Simulative Evaluation of Security Attacks in Networked Critical Infrastructures
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    Chapter 28 Optimization of Reconfiguration Mechanisms in Critical Infrastructures
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    Chapter 29 How to Use Mobile Communication in Critical Infrastructures: A Dependability Analysis
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    Chapter 30 Using Structured Assurance Case Approach to Analyse Security and Reliability of Critical Infrastructures
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    Chapter 31 Multidirectional Modular Conditional Safety Certificates
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    Chapter 32 Approaches for Software Verification of An Emergency Recovery System for Micro Air Vehicles
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    Chapter 33 The Role of CM in Agile Development of Safety-Critical Software
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    Chapter 34 Is Current Incremental Safety Assurance Sound?
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    Chapter 35 Dependability Arguments Supported by Fuzz-Testing
Attention for Chapter 23: Combining MILS with Contract-Based Design for Safety and Security Requirements
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Chapter title
Combining MILS with Contract-Based Design for Safety and Security Requirements
Chapter number 23
Book title
Computer Safety, Reliability, and Security
Published by
Springer, Cham, September 2014
DOI 10.1007/978-3-319-24249-1_23
Book ISBNs
978-3-31-924248-4, 978-3-31-924249-1

Alessandro Cimatti, Rance DeLong, Davide Marcantonio, Stefano Tonetta

Mendeley readers

The data shown below were compiled from readership statistics for 14 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 14 100%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 5 36%
Researcher 3 21%
Professor 1 7%
Student > Doctoral Student 1 7%
Lecturer 1 7%
Other 2 14%
Unknown 1 7%
Readers by discipline Count As %
Computer Science 10 71%
Engineering 3 21%
Unknown 1 7%