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A Polarization Independent Quasi-TEM Metamaterial Absorber for X and Ku Band Sensing Applications

机译:一种用于X和Ku波段传感应用的独立偏振的准TEM超材料吸收体

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摘要

In this paper, a dual-band metamaterial absorber (MMA) ring with a mirror reflexed C-shape is introduced for X and Ku band sensing applications. The proposed metamaterial consists of two square ring resonators and a mirror reflexed C-shape, which reveals two distinctive absorption bands in the electromagnetic wave spectrum. The mechanism of the two-band absorber particularly demonstrates two resonance frequencies and absorption was analyzed using a quasi-TEM field distribution. The absorption can be tunable by changing the size of the metallic ring in the frequency spectrum. Design and analysis of the proposed meta-absorber was performed using the finite-integration technique (FIT)-based CST microwave studio simulation software. Two specific absorption peaks value of 99.6% and 99.14% are achieved at 13.78 GHz and 15.3 GHz, respectively. The absorption results have been measured and compared with computational results. The proposed dual-band absorber has potential applications in sensing techniques for satellite communication and radar systems.
机译:本文针对X和Ku波段传感应用介绍了一种具有镜面反射C形的双波段超材料吸收器(MMA)环。拟议的超材料由两个方形环形谐振器和一个镜面反射的C形组成,在电磁波谱中揭示了两个独特的吸收带。两频带吸收器的机理特别说明了两个共振频率,并使用准TEM场分布分析了吸收率。可以通过更改频谱中金属环的大小来调整吸收。使用基于有限积分技术(FIT)的CST微波工作室仿真软件对拟议的超吸收器进行了设计和分析。在13.78 GHz和15.3 GHz处分别达到99.6%和99.14%的两个特定吸收峰值。已测量吸收结果并将其与计算结果进行比较。拟议中的双频带吸收器在卫星通信和雷达系统的传感技术中具有潜在的应用。

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