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Optimal allocation and maintenance of multi-state elements in series-parallel systems with common bus performance sharing

机译:共用总线性能共享的串并联系统中多状态元件的最优分配和维护

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摘要

This article considers the optimal allocation and maintenance of multi-state elements in series-parallel systems with common bus performance sharing. The surplus performance from a sub-system can be transmitted to any other sub-system which is experiencing performance deficiency. The amount that can be transmitted is subjected to a random transmission capacity. In order to increase the system availability, maintenance actions can be performed during the system lifetime and the system elements can be optimally allocated into the sub-systems. In this paper, we consider the element allocation and maintenance simultaneously in order to minimize the total maintenance cost subject to the pre-specified system availability requirement. An algorithm based on universal generating function is suggested to evaluate the system availability and the genetic algorithm is explored to solve the optimization problem. Numerical experiments are presented to illustrate the applications.
机译:本文考虑了在共用总线性能共享的串并联系统中多状态元件的最佳分配和维护。子系统的过剩性能可以传输到任何出现性能不足的子系统。可以传输的数量受到随机传输容量的影响。为了增加系统可用性,可以在系统生命周期内执行维护操作,并且可以将系统元素最佳地分配到子系统中。在本文中,我们将同时考虑元素分配和维护,以最大程度地减少总维护成本(取决于预先指定的系统可用性要求)。提出了一种基于通用生成函数的算法来评估系统的可用性,并探索遗传算法来解决优化问题。数值实验表明了其应用。

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