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A Compact Dual-Band Antenna Enabled by a Complementary Split-Ring Resonator-Loaded Metasurface

机译:紧凑的双频带天线,通过互补的开环谐振器超颖表面实现

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摘要

In this paper, the design of a compact dual-band antenna with operational bands centered at 1.9 and 2.5 GHz is introduced and validated numerically as well as experimentally. The proposed antenna is comprised by placing a monopole feeding antenna above an engineered multilayer metasurface (MS) which functions as an artificial ground plane. Moreover, complementary split-ring resonator structures are incorporated into the multilayer MS design to realize the dual-band operation of the proposed monopole-MS integrated antenna system. Dispersive analysis of the MS unit cell reveals the underlying radiation mechanism of the antenna. It is observed that the designed MS resonates in both frequency bands with a resonance mode pattern resembling that of the TM10 mode of a rectangular patch antenna, thereby yielding a broadside radiation pattern in both bands. The overall footprint of the antenna is only 0.062λ02, where λ0 is the free space wavelength at 1.9 GHz. Importantly, by using the proposed artificial ground plane, even with a highly miniaturized form factor, the antenna still maintains a peak gain of above 5 dBi and a front-to-back ratio higher than 6 dB within the two operational bands.
机译:在本文中,介绍了一种紧凑的双频带天线的设计,其工作频带集中在1.9和2.5 GHz,并在数值上和实验上得到了验证。所提出的天线是通过将单极馈电天线放置在经过工程改造的多层超颖表面(MS)上方而制成的,该多层超颖表面用作人造接地层。此外,互补的开口环谐振器结构被并入多层MS设计中,以实现所提出的单极-MS集成天线系统的双频操作。 MS晶胞的色散分析揭示了天线的潜在辐射机制。可以看出,所设计的MS在两个频带中以类似于矩形贴片天线的TM 10 模式的谐振模式模式谐振,从而在两个频带中产生宽边辐射模式。天线的总尺寸仅为0.062λ 0 2 ,其中λ 0 是1.9 GHz的自由空间波长。重要的是,即使在高度小型化的情况下,通过使用建议的人工接地平面,天线在两个工作频段内仍可保持高于5 dBi的峰值增益和高于6 dB的前后比。

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