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Miniaturization of rectangular microstrip patch antenna using topology optimized metamaterial

机译:使用拓扑优化的超材料将矩形微带贴片天线小型化

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A topology optimization method is proposed in this study to miniaturize a Rectangular Microstrip Patch Antenna (RMPA) operates at a frequency of 2.4 GHz using Metamaterials (MTMs) composed of complementary resonator. The metamaterial is placed in an intermediate layer between the patch and the ground, binary pixelation approach is used to build the structure of the complementary resonator and it is optimized using the Genetic Algorithm (GA). The conventional patch antenna and the proposed patch antenna are designed and simulated using High Frequency Electromagnetic Field Simulation (HFSS) software. A comparison between results of the two antennas is done. The area of the proposed patch antenna is reduced about 73.6% compared with the conventional patch antenna, and the return loss is improved from a??18 dB to a??35 dB.
机译:在这项研究中提出了一种拓扑优化方法,以利用由互补谐振器组成的超材料(MTM)来使矩形微带贴片天线(RMPA)最小化,其工作频率为2.4 GHz。将超材料放置在贴片和地面之间的中间层中,使用二进制像素化方法构建互补谐振器的结构,并使用遗传算法(GA)对其进行了优化。使用高频电磁场仿真(HFSS)软件设计和仿真常规的贴片天线和建议的贴片天线。比较了两个天线的结果。与传统的贴片天线相比,本发明的贴片天线的面积减少了约73.6%,回波损耗从αΔ18 dB改善到αΔ35 dB。

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