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Simultaneous Quality and Reliability Optimization for Systems Composed of Degrading Components

机译:具有劣化组件组成的系统的同时质量和可靠性优化

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Models for determining optimal component specifications limits have been developed considering both quality and reliability of a large system containing degrading components. Specifications on a characteristic of a system are usually determined by maximizing quality performance at the manufacturing phase. However, some systems are designed with components that degrade in time. For these systems, system reliability is a critical measure of the system performance over time. To the benefit of both the manufacturer and the consumer, both quality and reliability over the product life cycle need to be considered when setting initial manufacturing specifications. By rewarding the high system reliability and penalizing the quality loss due to variation, we investigate probability and optimization models to determine the initial process mean, specification limits, and system replacement intervals.
机译:考虑到含有劣化组件的大系统的质量和可靠性,已经开发了确定最佳分量规范限制的模型。关于系统特征的规范通常通过在制造阶段最大化质量性能来确定。但是,某些系统设计有时间降低时间的组件。对于这些系统,系统可靠性是随着时间的推移系统性能的关键测量。为了在设置初始制造规范时,需要考虑在制造商和消费者和消费者的利益,在产品生命周期中的质量和可靠性都需要考虑。通过奖励高系统可靠性和由于变化导致的质量损失,我们调查概率和优化模型来确定初始过程平均值,规格限制和系统更换间隔。

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