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Optimizing System Design under Degrading Failure Agents

机译:降级故障代理下的系统优化设计

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摘要

Taguchi's quality loss function defines a quadratic relationship between deviations from a target values and loss to society. Under this approach, targets of system performance indicators, are set to minimize this loss. Traditionally, robust design engineers make the implicit assumption that failure agents affect systems' technical parameters stochastically, under steady state. Consequently, robust design strategy seeks to minimize societal loss by setting each technical parameter as close as possible to the lowest value on the loss function, usually the mid-point between the lower and upper specification limits. However, on closer examination, it can be demonstrated that many failure agents affect systems (e.g., electronic components, Mechanical elements, Software pieces) in a predictable, dynamic direction and rate. The authors denote such agents "Degrading Failure Agents". The paper describes an optimized design strategy accounting for degrading failure agents. This is done by setting the operating points of technical parameters to counteract the effects of such failure agents. The approach is demonstrated with a cardiac pacemaker case study that considers several types of degradation models including joint models and Weibull bathtub distributions.
机译:田口的质量损失函数定义了偏离目标值与社会损失之间的二次关系。在这种方法下,设定系统性能指标的目标是最大程度地减少这种损失。传统上,健壮的设计工程师会做出隐含的假设,即故障代理在稳定状态下会随机影响系统的技术参数。因此,稳健的设计策略试图通过将每个技术参数设置为尽可能接近损耗函数的最小值(通常是规格下限和上限值之间的中点)来最小化社会损失。但是,通过仔细检查,可以证明许多故障代理会以可预测的动态方向和速率影响系统(例如,电子组件,机械元件,软件)。作者将此类代理称为“降级失败代理”。本文介绍了一种用于降低故障代理的优化设计策略。这可以通过设置技术参数的工作点来抵消此类故障因素的影响来完成。心脏起搏器案例研究证明了该方法,该案例研究考虑了多种类型的降解模型,包括关节模型和Weibull浴缸分布。

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