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Integration of Reliability - And Possibility-Based Design Optimizations Using Performance Measure Approach

机译:使用性能测量方法集成可靠性 - 基于可能性的设计优化

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Since deterministic optimum designs obtained without considering uncertainty lead to unreliable designs, it is vital to develop design methods that take account of the input uncertainty. When the input data contain sufficient information to characterize statistical distribution, the design optimization that incorporates the probability method is called a reliability-based design optimization (RBDO). It involves evaluation of probabilistic output performance measures. The enriched performance measure approach (PMA+) has been developed for efficient and robust design optimization process. This is integrated with the enhanced hybrid mean value (HMV+) method for effective evaluation of non-monotone and/or highly nonlinear probabilistic constraints. When sufficient information of input data cannot be obtained due to restrictions of budgets, facilities, human, time, etc., the input statistical distribution is not believable. In this case, the probability method cannot be used for reliability analysis and design optimization. To deal with the situation that input uncertainties have insufficient information, a possibility (or fuzzy set) method should be used for structural analysis. A possibility-based design optimization (PBDO) method is proposed along with a new numerical method, called maximal possibility search (MPS), for fuzzy (or possibility) analysis and employing the performance measure approach (PMA) that improves numerical efficiency and stability in PBDO. The proposed RBDO and PBDO methods are applied to two examples to show their computational features. Also, RBDO and PBDO results are compared for implications of these methods in design optimization.
机译:由于在不考虑不确定性的情况下获得的确定性最佳设计导致不可靠的设计,因此开发考虑输入不确定性的设计方法至关重要。当输入数据包含足够的信息以表征统计分布时,包含概率方法的设计优化称为基于可靠性的设计优化(RBDO)。它涉及评估概率输出性能措施。已经开发了富集的性能测量方法(PMA +)以实现高效且坚固的设计优化过程。这与增强的混合均值(HMV +)方法集成,以有效评估非单调和/或高度非线性概率约束。由于预算,设施,人类,时间等限制而无法获得输入数据的足够信息,输入统计分布是不可能的。在这种情况下,概率方法不能用于可靠性分析和设计优化。要处理输入不确定性没有足够信息的情况,应使用可能性(或模糊集)方法进行结构分析。基于可能的设计优化(PBDO)方法以及一种新的数值方法,称为最大可能性搜索(MPS),用于模糊(或可能性)分析,采用可提高数值效率和稳定性的性能测量方法(PMA) PBDO。建议的RBDO和PBDO方法应用于两个示例以显示其计算特征。此外,比较RBDO和PBDO结果,以便在设计优化中的这些方法的影响。

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