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Design of a miniaturized dual-band antenna for improved directivity using a dielectric-loaded cavity

机译:使用介电加载腔改善指向性的微型双频天线设计

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This article proposes the design of a dual-band global positioning system (GPS) antenna using a high-permittivity dielectric-loaded cavity. The cavity structure is filled with a dielectric material to miniaturize the size, and its width and depth are adjusted to maximize the front-to-back ratio for high directivity. Dual-band circular polarization characteristics are achieved by placing two radiating polygon loops at the aperture of the cavity, and the loops are electromagnetically coupled to a microstrip line for a coupled feeding network. The proposed antenna is fabricated, and its antenna characteristics are measured in a full anechoic chamber. The results demonstrate that the antenna is suitable for dual-band GPS applications with high bore-sight gain values of 3.4 dBic at 1.2276 GHz and 3.7 dBic at 1.5754 GHz. (c) 2016 Wiley Periodicals, Inc. Microwave Opt Technol Lett 58:1591-1595, 2016
机译:本文提出了一种使用高介电常数电介质腔的双频全球定位系统(GPS)天线的设计。空腔结构中填充了介电材料以使尺寸最小化,并对其宽度和深度进行了调整以最大化前后比,从而实现高方向性。通过将两个辐射多边形环放置在腔体的孔中来实现双波段圆极化特性,并且将这些环电磁耦合到微带线,以用于耦合的馈电网络。所提出的天线已制成,并且其天线特性是在全消声室内测量的。结果表明,该天线适用于双频GPS应用,其高视距增益值在1.2276 GHz下为3.4 dBic,在1.5754 GHz下为3.7 dBic。 (c)2016 Wiley Periodicals,Inc.微波选择技术通讯,2016年58:1591-1595

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