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Availability optimisation of multi-state series-parallel systems with human failures

机译:人为故障的多状态串并联系统的可用性优化

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摘要

Nowadays, the availability of systems and tendency to commit errors has become an important issue during the design of many engineering systems. Humans play a key role in the overall availability of engineering systems because many systems are interconnected by human links to a certain degree. Obviously, if the system is multi-state, methods to achieve the availability values of the system have an important role. In this paper, a redundancy optimisation problem for multi-state systems subject to human failures is formulated to minimise the system cost. Human failures are recognised with a fault tree analysis method, the universal generating function algorithm is used to compute the system availability and the genetic algorithm to optimise the system structure. To illustrate the credibility and applicability of the model, a case study is offered and analysed. The result of the solved model is corroborated and shows the efficiency of the used methods.
机译:如今,系统的可用性和犯错的趋势已成为许多工程系统设计过程中的重要问题。人在工程系统的整体可用性中起着关键作用,因为许多系统在一定程度上通过人为链接相互连接。显然,如果系统是多状态的,则实现系统可用性值的方法将发挥重要作用。在本文中,针对人为故障的多状态系统提出了冗余优化问题,以最大程度地降低系统成本。通过故障树分析方法识别人为故障,使用通用生成函数算法来计算系统可用性,并使用遗传算法来优化系统结构。为了说明该模型的可信度和适用性,提供了一个案例研究并进行了分析。求解模型的结果得到证实,并显示了所使用方法的效率。

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