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首页> 外文期刊>Mechanics Based Design of Structures and Machines >Performance Moment Integration (PMI) Method for Quality Assessment in Reliability-Based Robust Design Optimization
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Performance Moment Integration (PMI) Method for Quality Assessment in Reliability-Based Robust Design Optimization

机译:基于可靠性的稳健设计优化中的性能矩集成(PMI)方法用于质量评估

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摘要

The reliability-based robust design optimization deals with two objectives of structural design methodologies subject to various uncertainties: reliability and robustness. The reliability constraints deal with the probability of failures, while the robustness minimizes the product quality loss. In general, the product quality loss is described by using the first two statistical moments: mean and standard deviation. In this paper, a performance moment integration (PMI) method is proposed by using a three-level numerical integration on the output range to estimate the product quality loss. For the reliability part of the reliability-based robust design optimization, the enriched performance measure approach (PMA+) and its numerical method, enhanced hybrid-mean value (HMV+) method, are used. New formulations of reliability-based robust design optimization are presented for three different types of robustness objectives, such as smaller-the-better, larger-the-better, and nominal-the-best types. Examples that include an engine rubber gasket are used to demonstrate the effectiveness of reliability-based robust design optimization using the proposed PMI method for different types of robust objective.
机译:基于可靠性的鲁棒性设计优化涉及结构设计方法论的两个目标,这些目标受到各种不确定性的影响:可靠性和鲁棒性。可靠性约束处理出现故障的可能性,而健壮性则最大程度地降低了产品质量损失。通常,使用前两个统计矩来描述产品质量损失:平均值和标准偏差。本文提出了一种在输出范围上使用三级数值积分来估计产品质量损失的性能矩积分(PMI)方法。对于基于可靠性的鲁棒性设计优化的可靠性部分,使用了丰富的性能度量方法(PMA +)及其数值方法,增强的混合均值(HMV +)方法。针对三种不同类型的鲁棒性目标,提出了基于可靠性的鲁棒性设计优化的新公式,例如较小的,较大的和最佳的类型。使用包括发动机橡胶垫圈的示例来演示针对不同类型的耐用物镜使用建议的PMI方法进行基于可靠性的耐用性设计优化的有效性。

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