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A Single-Loop Strategy for Efficient Reliability-Based Electromagnetic Design Optimization

机译:基于单回路策略的高效可靠性电磁设计优化

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摘要

This paper proposes a single-loop optimization strategy for efficient reliability-based electromagnetic design in the presence of uncertainty. Unlike conventional reliability-based optimization methods, optimization and reliability assessment are totally decoupled from each other during the overall design process. To achieve the desired design feasibility, constraint boundaries of an original design problem are shifted to feasible directions determined by the reliability information of a previous design. After all, the proposed single-loop method for reliability-based optimization performs a serial design of deterministic optimization with shifting constraints and reliability analysis. The proposed method is tested with a mathematical problem and the TEAM Workshop Problem 22, and its numerical accuracy and efficiency is examined by comparison with existing methods.
机译:本文针对存在不确定性的情况,提出了一种有效的基于可靠性的电磁设计的单回路优化策略。与传统的基于可靠性的优化方法不同,优化和可靠性评估在整个设计过程中完全相互分离。为了实现期望的设计可行性,将原始设计问题的约束边界转移到由先前设计的可靠性信息确定的可行方向。毕竟,所提出的用于基于可靠性的优化的单环方法执行了具有移位约束和可靠性分析的确定性优化的串行设计。通过数学问题和TEAM Workshop问题22对提出的方法进行了测试,并通过与现有方法进行比较来检验其数值准确性和效率。

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