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Enriched Serial-Loop Optimization Method for Efficient Reliability-Based Electromagnetic Designs

机译:高效的基于电磁设计的丰富串行回路优化方法

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摘要

An enriched serial-loop method for reliability-based design optimization is presented to substantially improve computational efficiency as well as numerical accuracy when applied to electromagnetic design problems in the presence of uncertainties. Two numerical improvements are made over the original serial-loop optimization method, which employs a series of cycles of an equivalent deterministic optimization and reliability analysis. One is a feasibility check technique for the probabilistic constraints conducted only at the first design cycle. It identifies inactive constraints, which need not be considered after the next design cycles. The other is a reliability improvement scheme for slightly violated probabilistic constraints, which is performed at the end of iterative design cycles. When an obtained optimum is unsatisfactory to all probabilistic constraint conditions prescribed, the design point is slightly shifted toward a feasible design region by utilizing probabilistic information obtained. Finally, the TEAM Workshop Problem 22 is tested to compare the proposed method with the existing ones from a numerical efficiency and accuracy point of view.
机译:提出了一种用于基于可靠性的设计优化的丰富的串行回路方法,可以在存在不确定性的情况下将其应用于电磁设计问题时,大大提高计算效率和数值精度。在原始串行循环优化方法上进行了两个数值改进,该方法采用了等效确定性优化和可靠性分析的一系列循环。一种是仅在第一个设计周期进行概率约束的可行性检查技术。它标识不活动的约束,在下一个设计周期后无需考虑这些约束。另一个是针对稍微违反概率约束的可靠性改进方案,该方案在迭代设计周期结束时执行。当获得的最优值不能满足所有规定的概率约束条件时,通过利用获得的概率信息,将设计点略微移向可行的设计区域。最后,测试了TEAM Workshop Problem 22,从数值效率和准确性的角度比较了所提出的方法和现有方法。

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