首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Design and simulation of a wideband, wide-angle and polarization-insensitive microwave absorber based on pattern optimization of resistive films
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Design and simulation of a wideband, wide-angle and polarization-insensitive microwave absorber based on pattern optimization of resistive films

机译:基于电阻膜图案优化的宽带,广角和极化不敏感微波吸收器的设计与仿真

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摘要

A wideband, thin, and multilayer (planar) microwave absorber is designed in this paper. The absorber is a periodic array of cells which includes three patterns of resistive film on two dielectric substrates. To design the array's cell, a pattern optimization procedure based on the application of a binary optimization algorithm was utilized. The outcome of this procedure is a pixelated pattern of resistive film yielding the maximum possible absorption bandwidth (BW) and a high insensitivity to the polarization of the incident wave. Our pattern-optimized design achieved a 90%-absorption rate over a wide frequency BW of 1.6 to 23.7 GHz (175% fractional BW) under normal incidence. Moreover, the absorber operates over a wide range of incidence angles for obliquely incident waves.
机译:本文设计了一种宽带、薄、多层(平面)微波吸收器。吸收体是一个周期性的电池阵列,包括两个电介质衬底上的三种电阻膜图案。为了设计阵列单元,采用了基于二进制优化算法的模式优化程序。这个过程的结果是电阻膜的像素化图案,产生最大可能的吸收带宽(BW)和对入射波偏振的高度不敏感。我们的图案优化设计在正常入射下,在1.6至23.7 GHz(175%分数BW)的宽频率BW上实现了90%的吸收率。此外,对于斜入射波,吸收器在大范围的入射角范围内工作。

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