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Economy Optimization for Series-Parallel Multi-State Systems Considering Reliability Evaluation

机译:考虑可靠性评估的串并联多状态系统经济优化

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Multi-state systems are typical representatives in engineering system and numerous researches have been devoted to evaluate the reliability of multi-state systems. However, it is inefficient to apply the traditional algorithms to economy optimization problem for finding the optimal system structure which can balance the request of reliability and economy among several series-parallel multi-state systems, as its computational time may last for hours. Thus, this paper proposes a novel method based on ordinal optimization algorithm and Monte Carlo simulation technique to solve this economy optimization problem, instead of calculating the reliability of every system by traditional methods. Three analytically calculation methods concerning the characteristics of multi-state systems are defined, which can dramatically and effectively shorten the computational time by selecting the superior systems into reliability calculation process. A cost optimization algorithm to comprise both economic and reliability index is presented. Numerical studies and comparisons are illustrated to validate the efficiency of the proposed economy optimization method.
机译:多状态系统是工程系统中的典型代表,许多研究致力于评估多状态系统的可靠性。然而,将传统算法应用于经济优化问题以在多个串并联多状态系统之间寻找可以平衡可靠性和经济性要求的最优系统结构时,效率低下,因为其计算时间可能长达数小时。因此,本文提出了一种基于序数优化算法和蒙特卡罗模拟技术的新颖方法来解决该经济性优化问题,而不是使用传统方法来计算每个系统的可靠性。定义了与多状态系统特性有关的三种分析计算方法,通过将优越的系统选择为可靠性计算过程,可以显着有效地缩短计算时间。提出了一种既包含经济指标又包含可靠性指标的成本优化算法。数值研究和比较说明了以验证所提出的经济优化方法的效率。

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