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Design and implementation of 2.5D frequency-selective surface based on substrate-integrated waveguide technology

机译:基于基板 - 集成波导技术的2.5D频率选择表面的设计与实现

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In this paper, the patch-type frequency selective surfaces (FSS) based on substrate-integrated waveguide (SIW) technology is proposed to improve the bandwidth (BW) and angular performance. The proposed FSS configuration overcomes the limitations of both conventional 2D and 3D FSS structures. A closely coupled cascaded mechanism is employed to combine two identical FSS elements separated by thin dielectric substrate results in incorporation of SIW technology; hence, named as 2.5D FSS. A derived equivalent circuit model is used to estimate the basic performance of proposed FSS-SIW elements, and the response of analytical expressions has been validated and final design is obtained using full-wave simulations. Two basic FSS elements viz. single square loop and a Jerusalem cross have been investigated to prove the enhancement in their BW and angular stability. The proposed technique evidently improves the BW and angular stability of FSS structures than in its established form. Besides, various important parameters that influence the performance characteristics of reported 2.5D FSSs are also studied. The important observations made on the thickness, as the thickness increases the bandstop FSS, can change to bandpass FSS. Finally, the proposed FSS structure has been fabricated and measured using free space measurement setup, to show the effectiveness of theoretical results. The measured results show good agreement with simulated results at normal and oblique incidence angle.
机译:在本文中,提出了基于基板 - 集成波导(SIW)技术的贴片型频率选择表面(FSS)来改善带宽(BW)和角度性能。所提出的FSS配置克服了传统的2D和3D FSS结构的局限性。采用紧密耦合的级联机构来组合由薄电介质基板分离的两个相同的FSS元件导致SiW技术的掺入;因此,命名为2.5d FSS。派生的等效电路模型用于估计所提出的FSS-SIW元素的基本性能,并且通过全波模拟获得了验证了分析表达式的响应和最终设计。两个基本的FSS元素viz。已经研究了单方面环和耶路撒冷十字架以证明其BW和角度稳定性的增强。所提出的技术明显提高了FSS结构的BW和角度稳定性,而不是其既定的形式。此外,还研究了影响报告的2.5D FSSS性能特征的各种重要参数。随着厚度的增加,在厚度上增加了带式FSS的重要观察,可以改变为带通FSS。最后,使用自由空间测量设置制造和测量了所提出的FSS结构,以显示理论结果的有效性。测量结果表明,正常和倾斜入射角的模拟结果良好。

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