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A Multiphase Decision Model for System Reliability Growth With Latent Failures

机译:具有潜在故障的系统可靠性增长的多阶段决策模型

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摘要

Reliability growth testing becomes difficult to implement as the product development cycle continues to shrink. As a result, the new design is prone to latent failures due to design immaturity and uncertain operating condition. Reliability growth planning emerged as a new methodology to drive the reliability across the product lifetime. We propose a multiphase reliability growth model that sequentially determines and implements corrective actions (CAs) against surfaced and latent failure modes. Such a holistic approach enables the manufacturer to attain the reliability goal while ensuring the product time to market. We devise a CA effectiveness function to assess the tradeoff between the failure removal rate and the required resources. Rosen's gradient projection algorithm is used to determine the optimal resource allocation in each phase. The applicability and performance of the reliability growth model are demonstrated on a fleet of semiconductor testing equipment.
机译:随着产品开发周期的不断缩短,可靠性增长测试变得难以实施。结果,由于设计不成熟和不确定的工作条件,新设计容易出现潜在故障。可靠性增长计划已成为一种在产品生命周期内提高可靠性的新方法。我们提出了一种多阶段可靠性增长模型,该模型可以顺序确定并实施针对表面和潜在故障模式的纠正措施(CA)。这种整体方法使制造商能够在确保产品上市时间的同时达到可靠性目标。我们设计了一个CA有效性函数来评估故障消除率和所需资源之间的权衡。 Rosen的梯度投影算法用于确定每个阶段的最佳资源分配。可靠性增长模型的适用性和性能在一系列半导体测试设备上得到了证明。

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