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Extended great deluge algorithm for the imperfect preventive maintenance optimization of multi-state systems

机译:扩展的大洪水算法,用于不完善的多状态系统预防性维护优化

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摘要

This paper deals with preventive maintenance optimization problem for multi-state systems (MSS). This problem was initially addressed and solved by Levitin and Lisnianski [Optimization of imperfect preventive maintenance for multi-state systems. Reliab Eng Syst Saf 2000;67:193-203]. It consists on finding an optimal sequence of maintenance actions which minimizes maintenance cost while providing the desired system reliability level. This paper proposes an approach which improves the results obtained by genetic algorithm (GENITOR) in Levitin and Lisnianski [Optimization of imperfect preventive maintenance for multi-state systems. Reliab Eng Syst Saf 2000;67:193-203]. The considered MSS have a range of performance levels and their reliability is defined to be the ability to meet a given demand. This reliability is evaluated by using the universal generating function technique. An optimization method based on the extended great deluge algorithm is proposed. This method has the advantage over other methods to be simple and requires less effort for its implementation. The developed algorithm is compared to than in Levitin and Lisnianski [Optimization of imperfect preventive maintenance for multi-state systems. Reliab Eng Syst Saf 2000;67:193-203] by using a reference example and two newly generated examples. This comparison shows that the extended great deluge gives the best solutions (i.e. those with minimal costs) for 8 instances among 10.
机译:本文讨论了多状态系统(MSS)的预防性维护优化问题。 Levitin和Lisnianski最初解决并解决了这个问题[优化多状态系统的不完善的预防性维护。 Reliab Eng Syst Saf 2000; 67:193-203]。它包括找到最佳的维护措施顺序,以最大程度地降低维护成本,同时提供所需的系统可靠性。本文提出了一种方法,该方法可改善Levitin和Lisnianski中的遗传算法(GENITOR)获得的结果[多状态系统不完善的预防性维护的优化。 Reliab Eng Syst Saf 2000; 67:193-203]。所考虑的MSS具有一系列性能水平,其可靠性被定义为能够满足给定需求的能力。通过使用通用生成函数技术来评估此可靠性。提出了一种基于扩展大洪水算法的优化方法。与其他方法相比,该方法具有简单易行的优点,并且实现起来所需的精力更少。将开发的算法与Levitin和Lisnianski中的算法进行了比较[多状态系统的不完善预防性维护的优化。 Reliab Eng Syst Saf 2000; 67:193-203],其中包含一个参考示例和两个新生成的示例。这种比较表明,扩展的大洪水可为10个实例中的8个实例提供最佳解决方案(即成本最低的解决方案)。

著录项

  • 来源
    《Reliability Engineering & System Safety》 |2008年第11期|1658-1672|共15页
  • 作者单位

    Mechanical Engineering Department, Faculty of Science and Engineering, fnteruniversity Reseurch Center on Enterprise Networks, Logistics and Transportation (CIRRELT), Universite Laval, Quebec, Canada;

    Mechanical Engineering Department, Faculty of Science and Engineering, fnteruniversity Reseurch Center on Enterprise Networks, Logistics and Transportation (CIRRELT), Universite Laval, Quebec, Canada;

    Mechanical Engineering Department, Faculty of Science and Engineering, fnteruniversity Reseurch Center on Enterprise Networks, Logistics and Transportation (CIRRELT), Universite Laval, Quebec, Canada;

    Mechanical Engineering Department, Faculty of Science and Engineering, fnteruniversity Reseurch Center on Enterprise Networks, Logistics and Transportation (CIRRELT), Universite Laval, Quebec, Canada;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    multi-state systems; preventive maintenance; universal generating function; extended great deluge algorithm;

    机译:多状态系统;预防性的维护;通用生成功能;扩展大洪水算法;
  • 入库时间 2022-08-17 13:30:54

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