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Maintenance Optimization of Consecutive-$k$-out-of-$n$ System with Multiobjective Birnbaum Importance-based Particle Swarm Optimization

机译:基于多目标Birnbaum重要性粒子群优化的连续 $ k $ -of- $ n $ 系统的维护优化

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摘要

This paper focuses on the maintenance optimization problem of consecutive-k-out-of-n systems which are maintained through exchanging the position of components and improving the reliability of components. At first, the multi-objective maintenance optimization model is constructed based on comprehensive consideration of the system reliability and maintenance cost. Then, the relationship between component reliability and maintenance cost is discussed and introduced into the Birnbaum importance to establish the idea of multi-objective Birnbaum importance (MOBI). It is clear that the maintenance strategy based on MOBI was more effective than the maintenance strategy based on traditional Birnbaum importance. Thirdly, the MOBI-based particle swarm optimization (MOBI-PSO) method is proposed by taking the advantages of MOBI and particle swarm optimization. Finally, the MOBI-PSO is applied to solve the problem of multi-objective maintenance optimization for consecutive-k-out-of-n systems. The simulation results show that the optimization algorithm based on MOBI could make the system more reliable with lower maintenance cost after maintenance.
机译:本文重点研究了n个连续k出n个系统的维护优化问题,该系统通过交换组件的位置和提高组件的可靠性来进行维护。首先,在综合考虑系统可靠性和维护成本的基础上,建立了多目标维护优化模型。然后,讨论了零件可靠性与维护成本之间的关系,并将其引入伯恩鲍姆重要性,以建立多目标伯恩鲍姆重要性(MOBI)的思想。显然,基于MOBI的维护策略比基于传统Birnbaum重要性的维护策略更有效。第三,结合MOBI和粒子群算法的优点,提出了基于MOBI的粒子群算法(MOBI-PSO)。最后,将MOBI-PSO用于解决连续k出n系统的多目标维护优化问题。仿真结果表明,基于MOBI的优化算法可以使系统更可靠,维护后的维护成本更低。

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