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首页> 外文期刊>IEEE Transactions on Reliability >Optimal allocation of multistate elements in a linear consecutively-connected system
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Optimal allocation of multistate elements in a linear consecutively-connected system

机译:线性连续连接系统中多状态元素的最优分配

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摘要

A linear consecutively-connected system consists of N+1 linear ordered positions. M s-independent multistate elements with different characteristics are to be allocated to the first N positions. Each element can provide a connection between the position to which it is allocated and the next few positions. The reliability of the connection for any given element depends on: (1) the position to which it is allocated; and (2) the number of positions it connects. The system fails if the first position (source) is not connected with the N+1 position (sink). An algorithm based on the universal generating function method is suggested for the linear consecutively-connected system reliability determination. This algorithm can handle cases in which any number of multistate elements are allocated in the same position while some positions remain empty. In many cases, such uneven allocation provides greater system reliability than the even one. A genetic algorithm is used as an optimization tool to solve the optimal element-allocation problem.
机译:线性连续连接系统由N + 1个线性有序位置组成。具有不同特性的Ms独立的多状态元素应分配给前N个位置。每个元素可以在其分配到的位置与接下来的几个位置之间提供连接。任何给定元素的连接可靠性取决于:(1)分配位置; (2)它连接的位置数。如果第一个位置(源)未与N + 1位置(接收器)连接,则系统将失败。提出了一种基于通用生成函数法的线性连续连接系统可靠性确定算法。该算法可以处理将任意数量的多状态元素分配到同一位置而某些位置保持空的情况。在许多情况下,这种不均衡的分配提供了比偶数分配更高的系统可靠性。遗传算法被用作优化工具来解决最优元素分配问题。

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