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A Compact Metasurface-Enabled Dual-Band Dual-Circularly Polarized Antenna Loaded With Complementary Split Ring Resonators

机译:紧凑的超表面启用双频带双圆极化天线,带有互补开环谐振器。

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摘要

In this paper, the design and experimental validation of a novel miniaturized dual-band dual-circularly polarized (CP) metasurface (MS) antenna is reported. The proposed antenna is enabled by an engineered MS-based artificial ground that supports simultaneous dual-band functionality and dual-CP unidirectional radiation. The artificial ground is a highly truncated dual-layer MS containing an array of 2 x 2 unit cells. Each unit cell is comprised by a patch and a complementary split ring resonator (CSRR) printed on the top and bottom surfaces of the substrate, respectively. A printed feeding monopole antenna is integrated with the MS to form a low-profile dual-band dual-CP antenna with a thickness of 0.04 lambda(0), where lambda(0) is the free-space wavelength at the first operational band. A dispersion analysis of the unit cell is carried out both analytically and numerically to illustrate the working principle of the proposed antenna. This reveals that the bianisotropic response and the orientation of the CSRRs jointly provide distinct dispersion behavior along two orthogonal directions of the dual-layer MS, enabling the desired dual-band dual-CP radiation. Moreover, the CSRRs also facilitate antenna miniaturization, yielding an overall footprint of only 0.33 lambda(0) x 0.33 lambda(0). In order to verify the antenna design, a prototype is fabricated and tested, and strong agreement between simulated and measured results is observed, experimentally achieving a 50 MHz bandwidth, and a peak gain of 3.95 and 5.29 dBi at the two targeted bands with opposite handedness for the radiated waves.
机译:本文报道了一种新型的小型化的双频带双圆极化(CP)超表面(MS)天线的设计和实验验证。拟议的天线由基于MS的工程人造地面实现,该地面支持同时双频功能和双CP单向辐射。人造地面是高度截断的双层MS,包含2 x 2个晶胞阵列。每个单位单元由分别印在基板顶表面和底表面上的贴片和互补裂环谐振器(CSRR)组成。印刷馈电单极天线与MS集成在一起,以形成厚度为0.04 lambda(0)的薄型双频双CP天线,其中lambda(0)是第一工作频段的自由空间波长。对单位单元的色散分析进行了分析和数值分析,以说明所提出天线的工作原理。这表明,各向异性响应和CSRR的方向共同沿着双层MS的两个正交方向提供了不同的色散行为,从而实现了所需的双波段双CP辐射。此外,CSRR还促进了天线的小型化,其总占地面积仅为0.33 lambda(0)x 0.33 lambda(0)。为了验证天线设计,制造并测试了原型,并观察到了仿真结果与测量结果之间的强一致性,通过实验获得了50 MHz带宽,并且在两个相反的目标频段上的峰值增益分别为3.95和5.29 dBi对于辐射波。

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