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Redundancy allocation of series-parallel systems using a variable neighborhood search algorithm

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  • Liang, Yun-Chia
  • Chen, Yi-Ching

Abstract

This paper presents a meta-heuristic algorithm, variable neighborhood search (VNS), to the redundancy allocation problem (RAP). The RAP, an NP-hard problem, has attracted the attention of much prior research, generally in a restricted form where each subsystem must consist of identical components. The newer meta-heuristic methods overcome this limitation and offer a practical way to solve large instances of the relaxed RAP where different components can be used in parallel. Authors’ previously published work has shown promise for the variable neighborhood descent (VND) method, the simplest version among VNS variations, on RAP. The variable neighborhood search method itself has not been used in reliability design, yet it is a method that fits those combinatorial problems with potential neighborhood structures, as in the case of the RAP. Therefore, authors further extended their work to develop a VNS algorithm for the RAP and tested a set of well-known benchmark problems from the literature. Results on 33 test instances ranging from less to severely constrained conditions show that the variable neighborhood search method improves the performance of VND and provides a competitive solution quality at economically computational expense in comparison with the best-known heuristics including ant colony optimization, genetic algorithm, and tabu search.

Suggested Citation

  • Liang, Yun-Chia & Chen, Yi-Ching, 2007. "Redundancy allocation of series-parallel systems using a variable neighborhood search algorithm," Reliability Engineering and System Safety, Elsevier, vol. 92(3), pages 323-331.
  • Handle: RePEc:eee:reensy:v:92:y:2007:i:3:p:323-331
    DOI: 10.1016/j.ress.2006.04.013
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    References listed on IDEAS

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    5. Richard Bellman & Stuart Dreyfus, 1958. "Dynamic Programming and the Reliability of Multicomponent Devices," Operations Research, INFORMS, vol. 6(2), pages 200-206, April.
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