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A Novel Metamaterial FSS-based Structure for Wideband Radome Applications

机译:基于新型超材料FSS的宽带天线罩应用结构

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摘要

A novel metamaterial based FSS (frequency selective surfaces) structure is presented in this paper for wideband airborne radome applications. The proposed metamaterial-FSS structure consists of three layers, where a DPS (double positive sign) layer is sandwiched between a MNG (μ-negative) and ENG (e-negative) layer, exhibits very good bandpass characteristics inside the operational band along with excellent roll-off characteristics outside the band. The EM performance analysis of the proposed structure has been carried out using transmission line transfer matrix (TLTM) method, which shows excellent bandpass characteristics over a wide frequency range. The transmission efficiency is over 95% both at normal incidence and at high incidence angles of 30°, and 60°. The frequency range extends from S- to X-band (2.5-9.9 GHz). In view of streamlined airborne radome applications, the reflection properties and insertion phase delay (IPD) are also determined at high incident angles.
机译:本文提出了一种新颖的基于超材料的FSS(频率选择表面)结构,用于宽带机载天线罩应用。拟议的超材料-FSS结构由三层组成,其中DPS(双正号)层夹在MNG(μ负)层和ENG(e负)层之间,在工作频带内具有非常好的带通特性,并且带外出色的滚降特性。使用传输线传输矩阵(TLTM)方法对提出的结构进行了EM性能分析,该方法在很宽的频率范围内显示出出色的带通特性。在法向入射和30°和60°的高入射角下,传输效率均超过95%。频率范围从S波段扩展到X波段(2.5-9.9 GHz)。考虑到简化的机载天线罩的应用,反射特性和插入相位延迟(IPD)也在高入射角下确定。

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