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Optimal Mean and Tolerance Allocation Using Conformance-based Design

机译:基于一致性设计的最佳均值和公差分配

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In this paper, we invoke probability constrained optimization to establish a framework for allocating means and tolerances in design for quality that focuses on customer satisfaction at predictable cost levels. The optimal allocation minimizes the production costs while ensuring that responses conform probabilistically to their specification limits. An overall system probability of conformance is obtained from a quality policy (e.g. defect rate, process capability index). Probabilities are evaluated using limit-state functions and fast integration methods. The three quality metrics (i.e. target/larger/smaller-is-best) and robustness are addressed naturally. The methodology is developed in detail and compared with the traditional minimum total cost approach. Optimal means and tolerances are found for an electromechanical servo system and a power division circuit to illustrate the practicality and potential of the approach.
机译:在本文中,我们调用概率约束优化来建立一个框架,用于分配质量设计中的均值和公差,该框架着眼于可预测成本水平的客户满意度。最佳分配可最大程度地降低生产成本,同时确保响应概率符合其规格限制。从质量策略(例如,缺陷率,过程能力指数)获得系统整体符合性的概率。使用极限状态函数和快速积分方法评估概率。自然解决了三个质量指标(即目标/更大/更小)。详细开发了该方法,并与传统的最低总成本方法进行了比较。找到了机电伺服系统和功率分配电路的最佳方法和公差,以说明该方法的实用性和潜力。

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