Availability maximization and cost study in multi-state systems

I. Maatouk, E. Châtelet, N. Chebbo
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引用次数: 15

Abstract

The paper presents a method for determining an optimal loading in series-parallel systems. The optimal loading is aimed at achieving the greatest possible expected system availability subject to required demand constraint. Then the corresponding system cost is deduced. We consider that system cost is a combination of downtime cost (loss of productivity), and repair cost (supposed proportional to repair time). The former is affected by a penalty value which reflects the importance of downtime cost with respect to repair cost. The model takes into account the relationship between the element failure rate and its corresponding load (element capacity). The universal generating function model is used to assess the performance distribution of the entire system and the system availability (knowing the probability of each performance level). Then, the unavailability and the repair time are estimated in order to study the system cost. The optimization is done for different values of required demand. The effect of required demand on the system availability and system cost is studied. The optimization technique is based on the genetic algorithm in order to determine the optimal load distribution. An illustrative example is presented.
多状态系统的可用性最大化与成本研究
本文提出了一种确定串并联系统最优负荷的方法。最优负载的目标是在需要的需求约束下实现最大可能的预期系统可用性。然后推导出相应的系统成本。我们认为系统成本是停机成本(生产力损失)和维修成本(假定与维修时间成正比)的组合。前者受到惩罚值的影响,惩罚值反映了停机成本相对于维修成本的重要性。该模型考虑了单元故障率与其相应荷载(单元容量)之间的关系。通用生成函数模型用于评估整个系统的性能分布和系统可用性(知道每个性能级别的概率)。然后对系统的不可用性和维修时间进行估计,以研究系统的成本。针对不同的需求值进行优化。研究了需求对系统可用性和系统成本的影响。该优化技术基于遗传算法,以确定最优负荷分配。给出了一个说明性实例。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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