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Beschreibung
Complex System Reliability presents a state-of-the-art treatment of complex multi-channel system reliability assessment and provides the requisite tools, techniques and algorithms required for designing, evaluating and optimizing ultra-reliable redundant systems.

Critical topics that make Complex System Reliability a unique and definitive resource include:
¿ redundant system analysis for k-out-of-n systems (including complex systems with embedded k-out-of-n structures) involving both perfect and imperfect fault coverage;
¿ imperfect fault coverage analysis techniques, including algorithms for assessing the reliability of redundant systems in which each element is subject to a given coverage value (element level coverage) or in which the system uses voting to avoid the effects of a failed element (fault level coverage); and
¿ state-of-the-art binary decision diagram analysis techniques, including the latest and most efficient algorithms for the reliability assessment of large, complex redundant systems.

This practical presentation includes numerous fully worked examples that provide detailed explanations of both the underlying design principles and the techniques (such as combinatorial, recursive and binary decision diagram algorithms) used to obtain quantitative results. Many of the worked examples are based on the design of modern digital fly-by-wire control system technology.

Complex System Reliability provides in-depth coverage of systems subject to either perfect or imperfect fault coverage and also the most recent techniques for correctly assessing the reliability of redundant systems that use mid-value-select voting as their primary means of redundancy management. It is a valuable resource for those involved in the design and reliability assessment of highly reliable systems, particularly in the aerospace and automotive sectors.
Complex System Reliability presents a state-of-the-art treatment of complex multi-channel system reliability assessment and provides the requisite tools, techniques and algorithms required for designing, evaluating and optimizing ultra-reliable redundant systems.

Critical topics that make Complex System Reliability a unique and definitive resource include:
¿ redundant system analysis for k-out-of-n systems (including complex systems with embedded k-out-of-n structures) involving both perfect and imperfect fault coverage;
¿ imperfect fault coverage analysis techniques, including algorithms for assessing the reliability of redundant systems in which each element is subject to a given coverage value (element level coverage) or in which the system uses voting to avoid the effects of a failed element (fault level coverage); and
¿ state-of-the-art binary decision diagram analysis techniques, including the latest and most efficient algorithms for the reliability assessment of large, complex redundant systems.

This practical presentation includes numerous fully worked examples that provide detailed explanations of both the underlying design principles and the techniques (such as combinatorial, recursive and binary decision diagram algorithms) used to obtain quantitative results. Many of the worked examples are based on the design of modern digital fly-by-wire control system technology.

Complex System Reliability provides in-depth coverage of systems subject to either perfect or imperfect fault coverage and also the most recent techniques for correctly assessing the reliability of redundant systems that use mid-value-select voting as their primary means of redundancy management. It is a valuable resource for those involved in the design and reliability assessment of highly reliable systems, particularly in the aerospace and automotive sectors.
Über den Autor

Albert Myers
retired as Chief Technology Officer for the Northrop Grumman Corporation and is an elected member of the National Academy of Engineering. During his career he has had extensive experience in the development and qualification of digital flight control systems - including the N.A.S.A. F-8 Digital Fly-by-Wire Program, the world's first digital fly-by-wire aircraft - and was the chief architect of the flight control system for the B-2 Stealth Bomber.

Zusammenfassung

Considers the treatment of redundant systems subject to imperfect fault coverage Provides the most recent techniques for assessing the reliability of redundant systems Includes numerous fully worked examples

Includes supplementary material: [...]

Inhaltsverzeichnis
Basic Elements of System Reliability.- Complex System Reliability.- Imperfect Fault Coverage.- Complex System Modeling Using BSV.- Conditional Probability Modeling Using BSV.- Binary Decision Diagrams.- FCASE Introduction.- Digital Fly-by-Wire System.- Limits on Achievable Reliability.- General Architectural Considerations.
Details
Erscheinungsjahr: 2014
Genre: Importe, Physik
Rubrik: Naturwissenschaften & Technik
Medium: Taschenbuch
Inhalt: xiii
238 S.
ISBN-13: 9781447157137
ISBN-10: 1447157133
Sprache: Englisch
Einband: Kartoniert / Broschiert
Autor: Myers, Albert
Auflage: 2nd edition 2010
Hersteller: Springer
Springer London
Springer-Verlag London Ltd.
Verantwortliche Person für die EU: Springer Verlag GmbH, Tiergartenstr. 17, D-69121 Heidelberg, juergen.hartmann@springer.com
Maße: 235 x 155 x 14 mm
Von/Mit: Albert Myers
Erscheinungsdatum: 22.11.2014
Gewicht: 0,388 kg
Artikel-ID: 104989551

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