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Network reliability : measures and evaluation /

In Engineering theory and applications, we think and operate in terms of logics and models with some acceptable and reasonable assumptions. The present text is aimed at providing modelling and analysis techniques for the evaluation of reliability measures (2-terminal, all-terminal, k-terminal reliab...

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Detalles Bibliográficos
Clasificación:Libro Electrónico
Autor principal: Chaturvedi, Sanjay K. (Autor)
Formato: Electrónico eBook
Idioma:Inglés
Publicado: Hoboken, New Jersey : Salem, Massachusetts : John Wiley & Sons ; Scrivener Publishing, 2016.
Colección:Performability engineering series
Temas:
Acceso en línea:Texto completo (Requiere registro previo con correo institucional)

MARC

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100 1 |a Chaturvedi, Sanjay K.,  |e author. 
245 1 0 |a Network reliability :  |b measures and evaluation /  |c Sanjay K. Chaturvedi. 
264 1 |a Hoboken, New Jersey :  |b John Wiley & Sons ;  |a Salem, Massachusetts :  |b Scrivener Publishing,  |c 2016. 
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500 |a Includes index. 
588 |a Description based on print version record and CIP data provided by publisher; resource not viewed. 
520 |a In Engineering theory and applications, we think and operate in terms of logics and models with some acceptable and reasonable assumptions. The present text is aimed at providing modelling and analysis techniques for the evaluation of reliability measures (2-terminal, all-terminal, k-terminal reliability) for systems whose structure can be described in the form of a probabilistic graph. Among the several approaches of network reliability evaluation, the multiple-variable-inversion sum-of-disjoint product approach finds a well-deserved niche as it provides the reliability or unreliability expression in a most efficient and compact manner. However, it does require an efficiently enumerated minimal inputs (minimal path, spanning tree, minimal k-trees, minimal cut, minimal global-cut, minimal k-cut) depending on the desired reliability. The present book covers these two aspects in detail through the descriptions of several algorithms devised by the 'reliability fraternity' and explained through solved examples to obtain and evaluate 2-terminal, k-terminal and all-terminal network reliability/unreliability measures and could be its USP. The accompanying web-based supplementary information containing modifiable Matlab® source code for the algorithms is another feature of this book. A very concerted effort has been made to keep the book ideally suitable for first course or even for a novice stepping into the area of network reliability. The mathematical treatment is kept as minimal as possible with an assumption on the readers' side that they have basic knowledge in graph theory, probabilities laws, Boolean laws and set theory. 
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