Multiple Frequencies Signal Absorber for Anti-Radar Applications in High Speed Flying Devices

Arfa Chalida Izhar Friswara, Khoirul Anwar, Levy Olivia Nur
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引用次数: 1

Abstract

The conventional anti-radar technology based on absorber can only work on a single frequency causing an anti-radar system can still detect when another frequency is used. This paper proposes an active anti-radar technology based on absorber working on multiple frequencies for flying objects, such as drones, missiles, and aircraft, by absorbing any radar signals with multiple frequencies. The absorber is a coating metamaterial on the surface of flying devices consisting of square metamaterial and varactor diode to absorb radar signals. This paper considers Active Frequency Selective Surface (AFSS) for designing absorber patch and simulates using a series of com-puter simulations. The simulation results show that absorption of signals with several frequency is possible with an absorption rate of more than 90 %, which is indicating that absorption of radar signals with multiple frequencies is possible and promising.
多频信号吸收器在高速飞行装置中的应用
传统的基于吸收体的反雷达技术只能在一个频率上工作,导致当使用另一个频率时,反雷达系统仍然可以检测到。针对无人机、导弹、飞机等飞行目标,提出了一种基于多频率吸收器的主动反雷达技术,该技术可以吸收任何多频率的雷达信号。该吸波器是由方形超材料和变容二极管组成的覆盖在飞行装置表面的超材料,用于吸收雷达信号。本文将主动频率选择表面(AFSS)用于设计吸收片,并进行了一系列的计算机仿真。仿真结果表明,对多个频率信号的吸收是可能的,吸收率在90%以上,说明对多频率雷达信号的吸收是可能的,也是有前景的。
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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