A Compact Circularly Polarized Crossed Dipole Antenna with Wide Bandwidth using Split Ring Resonator and Parasitic Patches

Hailong Yang, Zhiqiang Guo, Xuping Li, Yunqi Zhang, Xueyan Song, Shanzhe Wang
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Abstract

A new compact broadband circularly polarized (CP) crossed dipole antenna using split ring resonator (SRR) and parasitic patches are presented. The proposed antenna is mainly composed of two orthogonal strip dipoles, two 90∘ phase delay lines, four SRRs, and four parasitic patches. The combination of the orthogonal strip dipoles and the delay lines forms a crossed dipole as the main CP radiator. The well-designed SRR can extend the current path and improve the current distribution of high-frequency without increasing the size of the antenna, thereby reducing the size of the antenna and increasing the axial ratio (AR) bandwidth of the high-frequency. The introduction of parasitic patches can improve the current distribution between the upper and lower cut-off frequency points of the bandwidth, and make up for the defects of the insufficient bandwidth of the crossed dipole and the SRR, thereby realizing broadband CP radiation. To verify the antenna, a physical prototype is fabricated. The measured results show that the impedance bandwidth (IBW) of 69.1% (1.38-2.84 GHz), and a wide AR bandwidth of 57.7% (1.43-2.59 GHz). In addition, the designed antenna achieves a stable gain in the working band and a certain band-edge selectivity. Such a single-fed, simple structure and the wideband CP antenna is an excellent candidate for communication systems such as ISM (2.4 GHz), WiBro (2.3-2.39 GHz)and Inmarsat.
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一种采用分环谐振腔和寄生贴片的紧凑宽带宽圆极化交叉偶极子天线
提出了一种基于分环谐振腔和寄生贴片的新型宽带圆极化交叉偶极子天线。该天线主要由两条正交条形偶极子、两条90°相延迟线、四个srr和四个寄生贴片组成。正交带状偶极子与延迟线组合形成交叉偶极子作为主CP辐射体。设计良好的SRR可以在不增加天线尺寸的情况下延长电流通路,改善高频电流分布,从而减小天线尺寸,提高高频轴向比(AR)带宽。引入寄生贴片可以改善带宽上下截止频率点之间的电流分布,弥补交叉偶极子和SRR带宽不足的缺陷,从而实现宽带CP辐射。为了验证天线,制作了一个物理原型。测量结果表明,阻抗带宽(IBW)为69.1% (1.38 ~ 2.84 GHz), AR带宽为57.7% (1.43 ~ 2.59 GHz)。此外,所设计的天线在工作频带内具有稳定的增益和一定的带边选择性。这种单馈、结构简单的宽带CP天线是ISM (2.4 GHz)、WiBro (2.3-2.39 GHz)、Inmarsat等通信系统的理想选择。
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