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Multi-level redundancy optimization in series systems

机译:串联系统中的多级冗余优化

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Single-level systems have been considered in redundancy allocation problems. It may be the best policy in some specific situations, but not in general. In regards to reliability, it is most effective to duplicate the lowest objects, because parallel-series systems are more reliable than series-parallel systems. However, the smaller an object is, the more time and higher accuracy are needed for duplicating it, and so, redundancy cost can be decreased by using modular redundancy. Therefore, providing redundancy at high levels like as modules or subsystems, can be more economical than providing redundancy at low level of components. In this paper, the problem in which redundancy is available at all levels in a series system is addressed and a mixed integer programming model is presented. A heuristic algorithm and a genetic algorithm are proposed to solve the problem and some examples illustrate the procedure.
机译:在冗余分配问题中已经考虑了单级系统。在某些特定情况下,这可能是最好的策略,但总的来说不是。关于可靠性,复制最低的对象是最有效的,因为并行串联系统比串联-并联系统更可靠。但是,对象越小,复制所需的时间越多且精度越高,因此,通过使用模块化冗余可以降低冗余成本。因此,提供高级别的冗余(例如模块或子系统)比提供低级组件的冗余更经济。在本文中,解决了串联系统中所有级别都具有冗余的问题,并提出了一种混合整数规划模型。提出了启发式算法和遗传算法来解决该问题,并举例说明了该过程。

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