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Novel Swastika-shaped tightly coupled resonator based metamaterial-FSS for radome applications

机译:基于新型十字形紧耦合谐振器的超材料FSS,适用于天线罩

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A novel metamaterial-FSS (frequency selective surface) is designed in this paper based on the theory of tightly coupled resonators for radome applications. The proposed metamaterial unit cell consists of a Swastika-shaped conductor on each side of the substrate which is shorted at the edges by introducing shorting strips. The structure exhibits negative permittivity and permeability behavior at distinct frequency region. The EM analysis of metamaterial-FSS is carried out using transmission line transfer matrix method and validated with the full-wave method. The structure exhibits bandpass characteristic with very high transmission efficiency (>90%) over the frequency range of 10.43–11.43 and sharp roll-off characteristics outside the band as compared to conventional FSS. In view of radome applications, the EM characteristics are further studied at oblique incidence, which is found to show stable EM characteristics w.r.t. angle of incidence and polarizations.
机译:本文基于紧密耦合谐振器的弧形应用的理论,设计了一种新颖的Metomaterial-FSS(频率选择性表面)。所提出的超材料单元电池由衬底的每一侧的Swastika形导体组成,该导体在边缘处短路,通过引入缩短条带。该结构在不同的频率区域表现出负介电常数和渗透性行为。使用传输线传输矩阵方法进行MetaMaterial-FSS的EM分析,并用全波法验证。与传统FSS相比,该结构在10.43-11.43的频率范围内具有非常高的传输效率(> 90%),并且与传统FSS相比,频段外的尖锐特性。考虑到弧形应用,EM特性进一步在倾斜发病率下进行了研究,该特征被发现显示出稳定的EM特性W.R.T.发病率和偏振角。

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