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A wideband quad-layer transmitarray antenna with double cross slot rings elements

机译:具有双十字槽环元件的宽带四层传输阵列天线

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摘要

This paper introduces and studies a multi-layer frequency selective surface structure as a new unit-cell to design a wideband quad-layer transmitarray antenna. The proposed unit-cell consists of a double cross slot rings (DCSRs) on a rectangular patch. This unit-cell supports the transmission phase range response about 400 degrees with magnitude better than -3 dB at 10 GHz and its sensitivity to the feed incident angle, up to 30 degrees, is very low. To validate the design approach, a quad-layer transmitarray antenna, which each layer contains 169-element, is designed at 10 GHz and then fabricated and measured. The measured results show 1-dB gain bandwidth of 25% (9.75-12.53 GHz) with 23.34 dB maximum gain and 38.3% aperture efficiency at 10.3 GHz. Moreover, the 2-dB and 3-dB gain bandwidth are 31% (9.45-12.92 GHz) and 36% (9.30-13.35 GHz), respectively. As a result, the proposed element has the broadband performance and therefore can be a proper candidate to design wideband transmitarray antennas. (C) 2019 Elsevier GmbH. All rights reserved.
机译:本文介绍并研究了多层频率选择性表面结构作为新的单元单元,以设计宽带四层传输阵列天线。所提出的单位单元由矩形贴片上的双交叉槽环(DCSR)组成。该单元电池支持在10GHz的10 GHz的幅度优于-3 dB的传输相位范围响应,其对进料入射角的敏感度,高达30度,非常低。为了验证设计方法,各层包含169元件的四层传输阵列天线,设计为10GHz,然后制造和测量。测量结果显示1-DB增益带宽为25%(9.75-12.53GHz),最大增益23.34dB的最大增益和38.3%的光圈效率为10.3 GHz。此外,2-DB和3-DB增益带宽分别为31%(9.45-12.92GHz)和36%(9.30-13.35GHz)。结果,所提出的元素具有宽带性能,因此可以是设计宽带传输阵列天线的适当候选者。 (c)2019年Elsevier GmbH。版权所有。

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