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Reliability evaluation of linear multi-state consecutively-connected systems constrained by m consecutive and n total gaps

机译:受m个连续间隙和n个总间隙约束的线性多态连续连接系统的可靠性评估

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摘要

This paper extends the linear multi-state consecutively-connected system (LMCCS) to the case of LMCCS-MN, where MN denotes the dual constraints of m consecutive gaps and n total gaps. All the nodes are distributed along a line and form a sequence. The distances between the adjacent nodes are usually non-uniform. The nodes except the last one can contain statistically independent multi-state connection elements (MCEs). Each MCE can provide a connection between the node at which it is located and the next nodes along the sequence. The LMCCS-MN fails if it meets either of the two constraints. The universal generating function technique is adopted to evaluate the system reliability. The optimal allocations of LMCCS-MN with two different types of failures are solved by genetic algorithm. Finally, two examples are given for the demonstration of the proposed model. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文将线性多状态连续连接系统(LMCCS)扩展到LMCCS-MN的情况,其中MN表示m个连续间隙和n个总间隙的双重约束。所有节点都沿着一条线分布并形成一个序列。相邻节点之间的距离通常是不均匀的。除最后一个节点外,其他节点可以包含统计独立的多状态连接元素(MCE)。每个MCE可以提供它所位于的节点与该序列中的下一个节点之间的连接。如果LMCCS-MN满足两个约束之一,则它失败。采用通用生成函数技术对系统可靠性进行评估。通过遗传算法求解了两种故障类型的LMCCS-MN的最优分配。最后,给出了两个例子来说明所提出的模型。 (C)2016 Elsevier Ltd.保留所有权利。

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