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首页> 外文期刊>Antennas and Propagation, IEEE Transactions on >Fast Optimization of Electromagnetic Design Problems Using the Covariance Matrix Adaptation Evolutionary Strategy
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Fast Optimization of Electromagnetic Design Problems Using the Covariance Matrix Adaptation Evolutionary Strategy

机译:使用协方差矩阵自适应进化策略快速优化电磁设计问题

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摘要

A new method of optimization recently made popular in the evolutionary computation (EC) community is introduced and applied to several electromagnetics design problems. First, a functional overview of the covariance matrix adaptation evolutionary strategy (CMA-ES) is provided. Then, CMA-ES is critiqued alongside a conventional particle swarm optimization (PSO) algorithm via the design of a wideband stacked-patch antenna. Finally, the two algorithms are employed for the design of small to moderate size aperiodic ultrawideband antenna array layouts (up to 100 elements). The results of the two electromagnetics design problems illustrate the ability of CMA-ES to provide a robust, fast and user-friendly alternative to more conventional optimization strategies such as PSO. Moreover, the ultrawideband array designs that were created using CMA-ES are seen to exhibit performances surpassing the best examples that have been reported in recent literature.
机译:介绍了最近在进化计算(EC)社区中流行的一种新的优化方法,并将其应用于若干电磁设计问题。首先,提供了协方差矩阵适应进化策略(CMA-ES)的功能概述。然后,通过宽带堆叠贴片天线的设计,对CMA-ES和常规粒子群优化(PSO)算法进行了批判。最后,这两种算法用于设计中小型非周期性超宽带天线阵列布局(最多100个元素)。这两个电磁设计问题的结果表明,CMA-ES能够为更常规的优化策略(例如PSO)提供健壮,快速且用户友好的替代方案。此外,使用CMA-ES创建的超宽带阵列设计表现出的性能超过了最近文献中报道的最佳实例。

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