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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >Application of a microgenetic algorithm (MGA) to the design ofbroadband microwave absorbers using multiple frequency selective surfacescreens buried in dielectrics
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Application of a microgenetic algorithm (MGA) to the design ofbroadband microwave absorbers using multiple frequency selective surfacescreens buried in dielectrics

机译:微遗传算法(MGA)在使用埋在电介质中的多频选择性表面筛网设计宽带微波吸收器中的应用

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摘要

Over the years, frequency selective surfaces (FSSs) have found frequent use as radomes and spatial filters in both commercial and military applications. In the literature, the problem of synthesizing broadband microwave absorbers using multilayered dielectrics through the application of genetic algorithms (GAs) have been dealt with successfully. Spatial filters employing multiple, freestanding, FSS screens have been successfully designed by utilizing a domain-decomposed GA. We present a procedure for synthesizing broadband microwave absorbers by using multiple FSS screens buried in a dielectric composite. A binary coded microgenetic algorithm (MGA) is applied to optimize various parameters, viz., the thickness and relative permittivity of each dielectric layer; the FSS screen designs and materials; their x- and y-periodicities; and their placement within the dielectric composite. The result is a multilayer composite that provides maximum absorption of both transverse electric (TE) and transverse magnetic (TM) waves simultaneously for a prescribed range of frequencies and incident angles. This technique automatically places an upper bound on the total thickness of the composite. While a single FSS screen is analyzed using the electric field integral equation (EFIE), multiple FSS screens are analyzed using the scattering matrix technique
机译:多年来,频率选择表面(FSS)已在商业和军事应用中频繁用作天线罩和空间滤波器。在文献中,已经成功地解决了通过应用遗传算法(GA)来使用多层电介质来合成宽带微波吸收器的问题。通过利用域分解的GA,成功设计了采用多个独立的FSS屏幕的空间滤波器。我们提出了一种使用埋在介电复合材料中的多个FSS屏幕合成宽带微波吸收器的程序。应用二进制编码微遗传算法(MGA)来优化各种参数,即每个介电层的厚度和相对介电常数; FSS屏幕设计和材料;他们的x和y周期;以及它们在介电复合材料中的位置。结果是多层复合材料,在规定的频率和入射角范围内,可以同时提供横向电波(TE)和横向磁波(TM)的最大吸收。该技术自动在复合材料的总厚度上设置上限。使用电场积分方程(EFIE)分析单个FSS屏幕时,使用散射矩阵技术分析多个FSS屏幕

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