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Maximization of a nuclear system availability through maintenance scheduling optimization using a genetic algorithm

机译:通过使用遗传算法的维护计划优化来最大化核系统的可用性

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摘要

In this paper, a method for preventive maintenance scheduling optimization of standby systems, based on genetic algorithm and probabilistic safety analysis, is described. The goal of this approach is to improve the average availability of the system through the optimization of the preventive maintenance policy. Here, the genetic modeling propitiates unconstrained optimization, allowing nonconstant intervals between maintenance, adapting them to the aging parameter of the Weibull distribution used. In order to demonstrate the effectiveness of the proposed method, it is applied to a nuclear system of a two-loop pressurized water reactor. The results, when compared with those obtained by some standard maintenance policies, reveal gains at safety level.
机译:本文介绍了一种基于遗传算法和概率安全分析的备用系统预防性维修计划优化方法。此方法的目标是通过优化预防性维护策略来提高系统的平均可用性。在这里,遗传建模会引发无限制的优化,从而允许维护之间的间隔非常固定,使它们适应所用Weibull分布的老化参数。为了证明该方法的有效性,将其应用于两回路压水堆核系统。与某些标准维护策略所获得的结果相比,该结果显示出在安全级别上的收益。

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