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Application of micro-genetic algorithm to the design of matched high gain patch antenna with zero-refractive-index metamaterial lens

机译:微遗传算法在零折射率超材料透镜匹配高增益贴片天线设计中的应用

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摘要

This paper presents a method for the computer aided design of high gain patch antenna with Zero-Refractive-Index (ZRI) metamaterials using Micro-Genetic Algorithm (MGA) and finite-difference time-domain (FDTD). The ZRI metamaterials, which is composed of metallic grids with periodic square lattice and slices of medium, is placed in front of the conventional patch antenna as a lens. The design progress and results are presented and discussed. A prototype of such a designed antenna has been fabricated and tested. The measured radiation patterns and return loss of the antenna are compared with the computed results, and a good agreement is observed. The ZRI lens can maintain 10 dBi maximum gain enhancement compared to the conventional patch antenna from 11.5 GHz to 12.5 GHz. The measured results show that the patch antenna with the ZRI lens has an impedance bandwidth in the range from 11.70 GHz to 12.56 GHz for S_(11) < -10 dB.
机译:本文提出了一种使用微遗传算法(MGA)和时域有限差分(FDTD)的具有零折射率(ZRI)超材料的高增益贴片天线的计算机辅助设计方法。 ZRI超材料由具有周期性方格和介质切片的金属网格组成,并作为透镜放置在常规贴片天线的前面。介绍并讨论了设计进度和结果。已经设计并测试了这种设计天线的原型。将测得的辐射方向图和天线的回波损耗与计算结果进行比较,可以观察到很好的一致性。与11.5 GHz至12.5 GHz的常规贴片天线相比,ZRI透镜可以保持10 dBi的最大增益增强。测量结果表明,对于S_(11)<-10 dB,带有ZRI透镜的贴片天线的阻抗带宽为11.70 GHz至12.56 GHz。

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