Abst'/> Reliability optimization for series systems under uncertain component failure rates in the design phase
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Reliability optimization for series systems under uncertain component failure rates in the design phase

机译:在设计阶段不确定组件失效率下的串联系统可靠性优化

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AbstractWe develop an optimization model to determine the reliability design of critical components in a serial system. The system is under a service contract, and a penalty cost has to be paid by the OEM when the total system down time exceeds a predetermined level, which complicates the evaluation of the expected cost under a given reliability design. Furthermore, in the design phase for each critical component, all possible designs are subject to uncertain component failure rates. Considering the computational intractability of evaluating the system performance, we develop approximate evaluation methods which take the system uncertainty into account. Numerical results show that the method which includes randomness in the number of failures, failure rates and repair times leads to efficient and accurate evaluations and to close-to-optimal design decisions when used in an enumeration procedure for the optimization problem. We also show that ignoring these three types of uncertainty may result in bad design decisions.
机译: 摘要 我们开发了一种优化模型来确定串行系统中关键组件的可靠性设计。该系统是根据服务合同签订的,当总系统停机时间超过预定水平时,OEM必须支付罚金,这会使给定可靠性设计下的预期成本估算变得复杂。此外,在每个关键组件的设计阶段,所有可能的设计都会受到不确定的组件故障率的影响。考虑到评估系统性能的计算难点,我们开发了将系统不确定性考虑在内的近似评估方法。数值结果表明,该方法包括故障数量,故障率和维修时间的随机性,可在进行优化问题的枚举过程中使用,从而可以进行有效,准确的评估,并可以得出接近最佳的设计决策。我们还表明,忽略这三种类型的不确定性可能会导致错误的设计决策。

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