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Optimized Design of Broadband Radar Absorbent Material

机译:宽带雷达吸波材料的优化设计

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Radar absorbent material (RAM) is widely used such as interference prevention between devices using radio waves and the wall of anechoic chamber. They have excellent characteristics depending on the applications, such as broadband characteristics, oblique incidence characteristics and both polarization characteristics. In recent years, various optimization methods have been used in RAM design studies. In this paper, we study the optimized design of two flat layers RAM with broadband characteristics by using Non-dominated sorting genetic algorithm-II (NSGA-II). The index of radio wave absorption amount is 20 dB corresponding to the absorption rate of 99 %, and the objective of this study is to obtain broadband characteristics satisfying the index. As a result, it is confirmed that broadband characteristics with relative bandwidth of 158 % can be obtained from 1.78 GHz with respect to 20 dB. In addition, two flat layers RAM with the maximum relative bandwidth is possible to be designed for the required minimum frequency at 1.78 GHz or higher by using the proposed optimized design method.
机译:诸如用于防止使用无线电波的设备与消声室壁之间的干扰之类的雷达吸收材料(RAM)被广泛使用。根据应用,它们具有出色的特性,例如宽带特性,倾斜入射特性和两种偏振特性。近年来,RAM设计研究中使用了各种优化方法。在本文中,我们使用非支配排序遗传算法-II(NSGA-II)研究了具有宽带特性的两个平坦层RAM的优化设计。无线电波吸收量的指标为20 dB,对应于99%的吸收率,本研究的目的是获得满足该指标的宽带特性。结果证实,相对于20dB,可以从1.78GHz获得相对带宽为158%的宽带特性。另外,通过使用建议的优化设计方法,可以为1.78 GHz或更高的所需最小频率设计两个具有最大相对带宽的平坦层RAM。

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