Reflection response control of bandwidth-enhanced antennas through constrained optimization

A. Bekasiewicz, S. Koziel, Q. Cheng
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Abstract

In this paper, we demonstrate the importance of precise reflection response control of enhanced-bandwidth antennas by means of automated simulation-driven optimization. In particular, a proper adjustment of antenna dimensions may lead to considerable broadening of the bandwidth even for small topological modifications of the structure. Computational efficiency of the design process is achieved by using surrogate-based optimization with coarse-discretization EM simulations utilized as the underlying low-fidelity antenna model. Furthermore, a penalty function approach allows us to precisely control the maximum in-band reflection so that sufficient margin to accommodate possible manufacturing tolerances is obtained. The optimized designs of the two antennas considered here feature over 31% and 38% bandwidth, respectively, w.r.t. the center frequency of 5.6 GHz. Simulation results are validated using measurements of the fabricated prototypes.
基于约束优化的增宽天线反射响应控制
本文通过仿真驱动的自动优化,论证了精确控制增强带宽天线反射响应的重要性。特别是,天线尺寸的适当调整可能导致带宽的相当大的拓宽,即使对结构的小拓扑修改也是如此。采用基于代理的优化方法,利用粗离散化电磁仿真作为基础的低保真天线模型,提高了设计过程的计算效率。此外,惩罚函数方法允许我们精确控制最大带内反射,以便获得足够的余量以适应可能的制造公差。本文所考虑的两种天线优化设计的带宽分别超过31%和38%,中心频率为5.6 GHz。仿真结果通过制造原型的测量验证。
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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