Computation of k-out-of-n System Reliability via Reduced Ordered Binary Decision Diagrams

Rushdi, Ali and Alturki, Alaa (2017) Computation of k-out-of-n System Reliability via Reduced Ordered Binary Decision Diagrams. British Journal of Mathematics & Computer Science, 22 (3). pp. 1-9. ISSN 22310851

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Abstract

A prominent reliability model is that of the partially-redundant (k-out-of-n) system. We use algebraic as well as signal-flow-graph methods to explore and expose the AR algorithm for computing k-out-of-n reliability. We demonstrate that the AR algorithm is, in fact, both a recursive and an iterative implementation of the strategy of Reduced Ordered Binary Decision Diagrams (ROBDDs). The underlying ROBDD for the AR recursive algorithm is represented by a compact Signal Flow Graph (SFG) that is used to deduce AR iterative algorithms of quadratic temporal complexity and linear spatial complexity. Extensions of the AR algorithm for (single or scalar) threshold, double-threshold, vector-threshold, and k-to-l-out-of-n systems have similar ROBDD interpretations.

Item Type: Article
Subjects: East Asian Archive > Computer Science
Depositing User: Unnamed user with email support@eastasianarchive.com
Date Deposited: 05 Jun 2023 05:47
Last Modified: 18 Aug 2025 03:35
URI: http://authors.go2articles.com/id/eprint/731

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