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A Miniaturized Antenna with Negative Index Metamaterial Based on Modified SRR and CLS Unit Cell for UWB Microwave Imaging Applications

机译:基于改进的SRR和CLS晶胞的负折射率超材料的微型天线用于UWB微波成像应用

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摘要

A miniaturized antenna employing a negative index metamaterial with modified split-ring resonator (SRR) and capacitance-loaded strip (CLS) unit cells is presented for Ultra wideband (UWB) microwave imaging applications. Four left-handed (LH) metamaterial (MTM) unit cells are located along one axis of the antenna as the radiating element. Each left-handed metamaterial unit cell combines a modified split-ring resonator (SRR) with a capacitance-loaded strip (CLS) to obtain a design architecture that simultaneously exhibits both negative permittivity and negative permeability, which ensures a stable negative refractive index to improve the antenna performance for microwave imaging. The antenna structure, with dimension of 16 × 21 × 1.6 mm3, is printed on a low dielectric FR4 material with a slotted ground plane and a microstrip feed. The measured reflection coefficient demonstrates that this antenna attains 114.5% bandwidth covering the frequency band of 3.4–12.5 GHz for a voltage standing wave ratio of less than 2 with a maximum gain of 5.16 dBi at 10.15 GHz. There is a stable harmony between the simulated and measured results that indicate improved nearly omni-directional radiation characteristics within the operational frequency band. The stable surface current distribution, negative refractive index characteristic, considerable gain and radiation properties make this proposed negative index metamaterial antenna optimal for UWB microwave imaging applications.
机译:针对超宽带(UWB)微波成像应用,提出了采用带有改良的裂环谐振器(SRR)和电容加载的带状(CLS)晶胞的负折射率超材料的小型化天线。四个左手(LH)超材料(MTM)单位单元沿着天线的一个轴放置,作为辐射元件。每个左手超材料单元格单元将改进的裂环谐振器(SRR)与电容加载带(CLS)结合在一起,以获得一种同时展现负介电常数和负磁导率的设计架构,从而确保稳定的负折射率以改善微波成像的天线性能。天线结构的尺寸为16×21×1.6 mm 3 ,印刷在具有开槽接地平面和微带馈源的低介电FR4材料上。测得的反射系数表明,当电压驻波比小于2时,该天线在3.4–12.5 GHz的频带上可获得114.5%的带宽,在10.15 GHz时的最大增益为5.16 dBi。在模拟结果和测量结果之间存在稳定的和谐,表明在工作频带内近乎全向的辐射特性得到了改善。稳定的表面电流分布,负折射率特性,可观的增益和辐射特性使此拟议的负折射率超材料天线成为UWB微波成像应用的最佳选择。

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