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Miniaturized Wideband CP Antenna Based on Metaresonator and CRLH-TLs for 5G New Radio Applications

机译:基于MetarEsonator和CRLH-TLS的小型化宽带CP天线,用于5G新型无线电应用

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This article presents a detailed study on an interesting compact wideband CP antenna using a novel split-ring resonator (SRR) and composite right-/left-handed transmission lines (CRLH-TLs). A novel vertical SRR made by the metallic sheets and PCB substrate is proposed, which achieves substantial size reduction. To obtain wideband CP radiation, a novel 3 dB branch-line coupler using dispersion engineered CRLH-TL is employed as the feeding circuit. The vertical SRR and CRLH-TL-based feeding network are analyzed by their own equivalent circuit models. A single-fed CP antenna and a dual-CP (LHCP/RHCP) antenna with a compact size of $0.277,,lambda _{0} imes 0.277,,lambda _{0} imes 0.033,,lambda _{0}$ at 3.30 GHz are implemented, respectively. For the dual-CP antenna, both the measured −10 dB $ert S_{11}ert $ bandwidth and 3 dB axial ratio (AR) bandwidth cover the 5G N78 band (3.30–3.80 GHz, 14.1%) quite well. In addition, the measured peak gain and radiation efficiency are greater than 5.4 dBic and 77% (−1.1 dB), respectively. It shows attractive features including a miniaturized size, low-cost, wide bandwidth, and good CP performance, appearing as good candidates for fifth-generation new radio (5GNR) communication systems.
机译:本文介绍了使用新颖的分机环谐振器(SRR)和复合右手传输线(CRLH-TLS)的有趣的紧凑型宽带CP天线的详细研究。提出了一种由金属板和PCB基板制成的新型垂直SRR,这实现了大小的减小。为了获得宽带CP辐射,采用新颖的3dB分支线耦合器使用分散工程的CRLH-TL作为进给电路。通过自己的等效电路模型分析了垂直SRR和CRLH-TL的馈电网络。单馈CP天线和双CP(LHCP / RHCP)天线,具有紧凑的<内联公式XMLNS:MML =“http://www.w3.org/1998/math/mathml”xmlns:xlink =“http://www.w3.org/1999/xlink”> $ 0.277 ,, lambda _ {0} times 0.277 ,, lambda _ {0 } 次数0.033 ,, lambda _ {0}分别实施3.30 GHz的$ 。对于双CP天线,测量-10 db <内联公式xmlns:mml =“http://www.w3.org/1998/math/mathml”xmlns:xlink =“http://www.w3 .org / 1999 / xlink“> $ vert S_ {11} vert $ 带宽和3 dB轴向比(AR)带宽覆盖5G N78频段(3.30-3.80 GHz,14.1%)。另外,测量的峰值增益和辐射效率分别大于5.4dBic和77%(-1.1dB)。它显示出具有小型化尺寸,低成本,带宽和良好的CP性能的有吸引力的特征,随着第五代新型无线电(5GNR)通信系统的良好候选者。

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