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Design and analysis of a broadband electrically small antenna using characteristic mode theory

机译:利用特征模式理论的宽带电小天线的设计与分析

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In this paper, a new broadband electrically small antenna is proposed for WiFi application. This antenna consists of a microstrip-feed-line and a parasitic metamaterial structure in the ground plane. In the proposed antenna, a parasitic metamaterial structure is used to overcome the problem of impedance matching instead of using external matching networks that occupy large space. Size reduction and good impedance matching at 2.4 GHz are achieved by placing a meander-line in the very near field of the microstrip-feed-line. The characteristic mode theory is used to analysis the proposed antenna. This antenna is designed to operate at 2.4 GHz and, its whole size is 8.5 mm x 8.5 mm x 1.524 mm (0.068 lambda(0) x 0.068 lambda(0) x 0.012 lambda(0)), which is one of the smallest electrically small antennas available at this frequency. A prototype of the proposed antenna is fabricated and, the measured results indicate that the -10 dB impedance bandwidth is 220 MHz from 2.28 to 2.5 GHz. This antenna is made on a single-layer substrate and easily fabricated through the standard planar techniques. The proposed antenna has a compact size and high bandwidth. (C) 2019 Elsevier GmbH. All rights reserved.
机译:本文提出了一种新的宽带电小天线,用于WiFi应用。该天线包括微带 - 进料管线和地面平面中的寄生式超材料结构。在所提出的天线中,使用寄生超材料结构来克服阻抗匹配的问题,而不是使用占用大空间的外部匹配网络。通过将曲折线放置在微带 - 进料线的近场中的曲折线来实现,在2.4 GHz下匹配的尺寸减小和良好的阻抗。特征模式理论用于分析所提出的天线。该天线设计用于2.4 GHz,其整体尺寸为8.5毫米x 8.5 mm x 1.524 mm(0.068λ(0)x 0.068λ(0)x 0.012λ(0)),这是电气最小的此频率可用的小天线。制造了所提出的天线的原型,测量结果表明-10dB阻抗带宽从2.28到2.5 GHz的220 MHz。该天线由单层基板制成,并且通过标准平面技术易于制造。所提出的天线具有紧凑的尺寸和高带宽。 (c)2019年Elsevier GmbH。版权所有。

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