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A low-cost fiberglass polymer resin dielectric material-based microstrip patch antenna for multiband applications

机译:一种低成本的基于玻璃纤维聚合物树脂介电材料的微带贴片天线,用于多频带应用

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The design analysis and prototype of a compact 8×10-mm~(2)planar microstrip line-fed patch antenna on a readily available, low-cost, reinforced-fiberglass polymer resin composite material substrate is presented in this article. The proposed compact-size antenna has been configured and numerically analyzed using the finite element method-based three-dimensional full-wave electromagnetic field simulator. The optimized design of the antenna has been fabricated on a printed circuit board (PCB), and experimental results have been collected for further analysis. The measurement results affirm the fractional impedance bandwidths of (return loss of less than -10 dB) of 38.78% (2.03–2.98 GHZ) and 16.3% (5.38–6.35 GHz), with average gains of 2.52 and 3.94 dBi at both lower and upper bands, respectively. The proposed dual resonant antenna shows the radiation efficiencies of 91.3% at 2.45 GHz and 87.7% at 5.95 GHz. The stable and almost symmetric radiation patterns and performance criteria of the antenna can successfully cover IEEE 802.11b/g, Bluetooth, WLAN, and C-band telecommunication satellite uplinks.
机译:本文介绍了一种紧凑的8×10mm〜(2)平面微带线馈电贴片天线的设计分析和原型,该天线在现成的低成本增强玻璃纤维聚合物树脂复合材料基板上进行了设计。使用基于有限元方法的三维全波电磁场模拟器对建议的紧凑型天线进行了配置和数值分析。天线的优化设计已在印刷电路板(PCB)上制造,并收集了实验结果用于进一步分析。测量结果确定了(返回损耗小于-10 dB)的分数阻抗带宽分别为38.78%(2.03–2.98 GHZ)和16.3%(5.38–6.35 GHz),在更低和更低时平均增益分别为2.52和3.94 dBi。高频段。提出的双谐振天线在2.45 GHz时显示91.3%的辐射效率,在5.95 GHz时显示87.7%的辐射效率。天线的稳定且几乎对称的辐射方向图和性能标准可以成功覆盖IEEE 802.11b / g / n,蓝牙,WLAN和C波段电信卫星上行链路。

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