A 2.5-Dimensional Miniaturized Frequency Selective Surface based on Convoluted Geometry

Saptarshi Ghosh
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Abstract

A miniaturized-element frequency selective surface (FSS) based filter geometry has been designed and analyzed in this paper. The geometry is made of convoluted meander lines printed on both sides of a dielectric and the patterns are joined by metallic vias engraved through the substrate, thereby reducing the operating frequency. This results in a compact 2.5-dimensional filter geometry exhibiting a combination of bandstop and bandpass responses, having unit cell dimensions of 0.044λ × 0.044λ, where λ is the operating wavelength at the lowest operating frequency (1.10 GHz). The proposed topology is four-fold symmetric as well as angularly stable for different polarizations. Parametric variation and other set of analyses have also been carried out to explain the operating principle of the proposed FSS. The proposed FSS design can be considered as a potential candidate for several radome applications.
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一种基于卷积几何的2.5维小型化频率选择曲面
本文设计并分析了一种基于小型化元件频率选择面(FSS)的滤波器结构。几何形状由印刷在电介质两侧的弯曲线条组成,图案由通过衬底雕刻的金属过孔连接,从而降低了工作频率。这就产生了一个紧凑的2.5维滤波器几何结构,具有带阻和带通响应的组合,其单元尺寸为0.044λ × 0.044λ,其中λ是最低工作频率(1.10 GHz)下的工作波长。所提出的拓扑结构是四重对称的,并且对于不同的极化是角稳定的。参数变化和其他一组分析也进行了解释所提出的FSS的工作原理。提出的FSS设计可以被认为是几种天线罩应用的潜在候选。
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