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Larrucea Ortube, Asier: Development and certification of dependable mixed-criticality embedded systemsEntwicklung und Zertifizierung von zuverlässigen eingebetteten Mixed-Criticality-Systemen. 2017
Inhalt
Zusammenfassung
Abstract
Acknowledgements
Contents
List of Figures
List of Tables
Abbreviations
1 Introduction
1.1 Objective
1.2 Contributions
1.3 Structure of this Thesis
2 Background
2.1 Mixed Criticality Systems
2.2 Certification Standards
2.3 Dependability
2.4 Fault Containment
2.5 Complexity Management
2.6 Structuring of Mixed-Criticality Embedded Systems
2.7 Partitioning in Time and Value Domains
2.8 Virtualization
2.9 COTS Multi-Core Devices
2.10 Mixed-Criticality Networks
2.11 Modular Safety Cases
2.12 Cross-Domain Mixed-Criticality Patterns
3 State Of The Art
3.1 Modularity among Standards
3.2 Modular Safety Case Notation Languages
4 DREAMS Architecture Style
4.1 Safety Development Process for Mixed-Criticality Sys-tems
5 Modular Safety Cases
5.1 A Modular Safety Case for an IEC 61508 compliant Generic Hypervisor
5.2 A Modular Safety Case for an IEC 61508 compliant Generic Safety Partition
5.3 A Modular Safety Case for an IEC 61508 compliant Generic COTS multi-core device
5.4 A Modular Safety Case for an IEC 61508 compliantGeneric Mixed-Criticality Network
6 Cross-Domain Mixed-Criticality Patterns
6.1 Hypervisor
6.2 COTS Multi-Core Device
6.3 Mixed-Criticality Network
7 Case Study – Wind Turbine
7.1 Safety Standards
7.2 System Architecture
7.3 System of System, Product Line and Modularity
7.4 Cross-Domain Patterns
8 Conclusions
8.1 Review
8.2 Future work
Bibliography
Appendices
Appendix A: Zynq-7000 COTS multi-core device - FMEA/FMECA/FMEDAs
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