MATNEC:一个内部开发的工具,用于电磁模拟和有线天线的进化优化

S. Zhao, C. Fumeaux, T. Fickenscher
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引用次数: 2

摘要

几十年来,各种数值电磁计算技术在天线设计中得到了广泛的应用。特别是基于矩量法求解电流分布积分方程的数值电磁代码,对于线天线和其他金属结构的建模和分析特别有效。然而,随着结构建模复杂度的增加,计算量会显著增加。采用径向基函数进行几何描述,用最少的变量表示结构变化,减轻了这种负担。进化优化是指在多变量环境中及时探索更大的解空间,以追求近最优解。公司开发了一种名为MATNEC的内部工具,集建模、仿真、分析和优化于一体,可以在考虑天线效率和带宽的前提下,在预定义的适应度函数下成功提供接近最优的解决方案。成功地优化了半径和节距变化的螺旋天线,有效地验证了MATNEC方法的鲁棒性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
MATNEC: An in-house developed tool for electromagnetic simulation and evolutionary optimization of wire antennas
Various techniques of numerical electromagnetic computation have been widely used for decades in the design of antennas. In particular, the Numerical Electromagnetic Code was developed based on the method of moments to solve integral equations for current distributions, and thus, it is particularly efficient for the modeling and analysis of wire antennas and other metal structures. The computation load can, however, increase significantly with the increase of complexity in structure modeling. Radial basis functions are employed for geometry description to ease such burden by representing structural variations with a minimal number of variables. Evolutionary optimizations are used to explore a wider solution space in a timely manner in the pursuit of near-optimal solution in a multivariable environment. An in-house tool called MATNEC integrating modeling, simulation, analysis, and optimization is developed, which can successfully deliver near-optimal solutions under a pre-defined fitness function, considering both antenna efficiency and bandwidth. Helical antennas with variations in radius and pitch are successfully optimized, which effectively verifies the robustness of MATNEC and methodology applied.
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