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Ultra-Broad Band Radar Cross Section Reduction of Waveguide Slot Antenna with Metamaterials

机译:含超材料的波导缝隙天线的超宽带雷达截面减小

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摘要

To reduce the radar cross section of a waveguide slot antenna, a three-layer metamaterial is presented based on orthogonal double split-ring resonators. The absorption characteristics of three-layer metamaterial are demonstrated by simulation. Moreover, the metamaterials have been loaded on common waveguide slot antenna according to the surface current distribution. The ultra-broad band radar cross section reduction of the antenna with metamaterials had been theoretically and experimentally investigated by radiating and scattering performances. Experimental and simulated results showed that the proposed antenna with metamaterials performed broadband radar cross section reduction from 3.9 GHz to 18 GHz and the gain had been improved due to the coupling effect between slot and the period structure. The maximal radar cross section reduction achieved 17.81 dB at 8.68 GHz for x-polarized incidence and 21.79 dB at 6.25 GHz for y-polarized waves.
机译:为了减小波导缝隙天线的雷达横截面,提出了一种基于正交双开口环谐振器的三层超材料。通过仿真证明了三层超材料的吸收特性。而且,根据表面电流分布,超材料已经被装载在公共波导缝隙天线上。通过辐射和散射性能,从理论上和实验上研究了用超材料降低天线的超宽带雷达截面。实验和仿真结果表明,所提出的超材料天线可以将宽带雷达的横截面从3.9 GHz减小到18 GHz,并且由于缝隙与周期结构之间的耦合效应,增益得到了提高。雷达最大横截面减小在x极化入射为8.68 GHz时达到17.81 dB,在y极化波为6.25 GHz时达到21.79 dB。

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