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Traveling-wave antenna based on metamaterial transmission line structure for use in multiple wireless communication applications

机译:基于超材料传输线结构的行波天线,用于多种无线通信应用

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This paper introduces a left-handed metamaterial traveling-wave antenna (TVVA) based on metamaterial transmission-line structure to enhance the gain and radiation efficiency of the antenna without trading on its fractional bandwidth. The antenna consists of a series of coupled unit-cells comprising "X-shaped" slots which are inductively terminated to ground. Effective aperture of the antenna can be increased by increasing the number of unit-cells. The consequence of this is enhanced gain and radiation efficiency performance with no adverse affect on its fractional bandwidth. The antenna's characterizing parameters were extracted using 3D electromagnetic simulation tool (HFSS (TM)), and the antenna was fabricated using standard PCB manufacturing techniques on a 1.6 mm thick dielectric substrate with permittivity of 2.2. The antenna operates from 0.4 GHz to 4.7 GHz. The antenna has an electrical size of 0.017 lambda(0) x 0.006 lambda(0) x 0.002 lambda(0), where lambda(0) is free space wavelength at 400 MHz. The proposed antenna is significantly smaller than its conventional counterparts. Antenna's measured optimum gain and radiation efficiency are 2 dBi and 65%, respectively, at 2.5 GHz. These features make the antenna attractive for use in multiple wireless communication applications. (C) 2016 Elsevier GmbH. All rights reserved.
机译:本文介绍了一种基于超材料传输线结构的左手超材料行波天线(TVVA),以提高天线的增益和辐射效率,而无需权衡其分数带宽。天线由一系列耦合的单元电池组成,这些单元电池包括感应接地的“ X形”槽。天线的有效孔径可以通过增加单位单元的数量来增加。这样的结果是增强了增益和辐射效率,而对其分数带宽没有不利影响。使用3D电磁仿真工具(HFSS(TM))提取天线的特征参数,并使用标准PCB制造技术在1.6毫米厚的介电常数为2.2的电介质基板上制造天线。天线的工作频率为0.4 GHz至4.7 GHz。天线的电气尺寸为0.017 lambda(0)x 0.006 lambda(0)x 0.002 lambda(0),其中lambda(0)是400 MHz处的自由空间波长。拟议的天线明显小于其常规天线。在2.5 GHz频率下,天线测得的最佳增益和辐射效率分别为2 dBi和65%。这些特征使天线具有吸引力,可用于多种无线通信应用中。 (C)2016 Elsevier GmbH。版权所有。

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