Convergence improvement of surrogate based optimization for reconfigurable antenna design using knowledge based inverse 3-step modeling

M.Simsek Murat Simsek, A. Aoad
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引用次数: 1

Abstract

Engineering design process requires modeling and optimization to find optimum design parameters. While direct optimization only exploits time consuming but accurate fine model, surrogate based optimization exploits less accurate but fast coarse model to reduce the overall computational effort. In this work, space mapping with inverse difference technique is applied to antenna design problem together with efficient 3-step modeling. The combination of two techniques provides less computational effort and better convergence through the accuracy improvement based on the new inverse 3-step modeling strategy. The inverse coarse model which is used for the parameter extraction process during the optimization is realized by knowledge based inverse 3-step modeling. Inverse 3-step coarse model is obtained by multi layer perceptron in MATLAB ANN toolbox. The efficiency of the combination of space mapping with inverse difference technique and 3-step modeling strategy will be demonstrated by reconfigurable antenna design example in terms of their convergence and accuracy through its multiple operating frequency characteristic.
基于知识逆三步建模的可重构天线设计代理优化收敛性改进
工程设计过程需要建模和优化,以找到最优的设计参数。直接优化只利用耗时但精确的精细模型,而基于代理的优化利用精度不高但快速的粗模型来减少总体计算量。本文将空间映射与逆差分技术应用于天线设计问题,并结合高效的三步建模。两种技术的结合通过基于新的逆3步建模策略的精度提高,减少了计算量和更好的收敛性。通过基于知识的逆3步建模实现了优化过程中参数提取的逆粗模型。利用MATLAB人工神经网络工具箱中的多层感知器获得逆3步粗模型。通过可重构天线的多工作频率特性,验证空间映射与逆差分技术和三步建模策略相结合的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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