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Complementary pattern method to reduce mutual coupling in metamaterial antennas

机译:减少超材料天线相互耦合的互补方向图方法

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摘要

A complementary pattern (CP) for multiple antennas in order to reduce mutual coupling between antenna elements is proposed and investigated. The proposed CP is comprised of meandered transmission lines between antennas on FR4 (;5;r = 4.6) substrate. The multiple antennas are a printed embedded type based on composite right/left handed (CRLH) metamaterial transmission lines. In order to validate the CP effects, simulation and measurement results for both the with-CP case and the without-CP case in metamaterial antennas are compared. The CP is presented as an equivalent circuit. Through parametric studies, the optimal dimension of CP is determined. The return loss, isolation, radiation patterns of each plane, measured peak gain and current distributions are provided. By calculating the envelope correlation coefficient between two antennas, the authors also demonstrate the effect of the CP in a metamaterial antenna. The total PCB size is 21.5 X 50 mm2 with 1 mm thickness, and the antenna space is 21.5 X 10 mm2. The resonant frequency with good isolation value is 3.3 GHz. Since the metamaterial antenna and CP consist of transmission lines, the proposed structures are compatible with other radio frequency (RF) devices.
机译:提出并研究了用于多个天线的互补图案(CP),以减少天线元件之间的相互耦合。建议的CP由FR4(; 5; r = 4.6)基板上天线之间的曲折传输线组成。多个天线是基于复合右/左手(CRLH)超材料传输线的印刷嵌入式类型。为了验证CP效应,比较了超材料天线中有CP情况和无CP情况的仿真和测量结果。 CP表示为等效电路。通过参数研究,确定了CP的最佳尺寸。提供了回波损耗,隔离度,每个平面的辐射图,测得的峰值增益和电流分布。通过计算两个天线之间的包络相关系数,作者还证明了CP在超材料天线中的作用。 PCB的总尺寸为21.5 X 50 mm2,厚度为1 mm,天线空间为21.5 X 10 mm2。具有良好隔离值的谐振频率为3.3 GHz。由于超材料天线和CP由传输线组成,因此建议的结构与其他射频(RF)设备兼容。

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