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Design and performance analysis of small-sized multiband microstrip patch antenna on custom-made biopolymer substrate

机译:定制生物聚合物基底上的小型多频带微带贴片天线的设计和性能分析

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This paper presents a simple design analysis and performance evaluation of rectangular, slotted, microstrip feed patch antenna. The design processes are performed by employing the finite element method (FEM)-based commercial EM simulation software High-Frequency Structural Simulator (HFSS). The proposed multiband antenna is composed of a rectangular, slotted radiator formed with four arc slots and central square slot, reduced ground plane, and microstrip line for feeding. The patch antenna is excited through the standard 50 Ω RF transmission line, impedance-compliant SMA connector that is connected to the microstrip line. The optimal parametric dimensions from the numerical simulations are used for constructing the physical prototype on a custom-made, ceramic-filled biopolymer substrate of ε _(r)=10.0. Based on simulation results, the experimental data are collected, analyzed, and compared; the surface current distributions on the patch, gain, and radiation patterns are critically discussed. The measured results show the impedance bandwidths for S11 less than -10 dB are 712 MHz at 0.788 GHz band, 1.38 GHz at 3.34 GHz band, and 2.46 GHz at 8.01 GHz band. The good radiation pattern performances, almost stable gain over the bands, and appreciable bandwidths recommend the antenna for operating in RFID, WiMAX, and C/X-band applications.
机译:本文介绍了矩形,开缝,微带馈电贴片天线的简单设计分析和性能评估。设计过程是通过使用基于有限元方法(FEM)的商业EM仿真软件高频结构仿真器(HFSS)来执行的。所提出的多频带天线由矩形的,开槽的辐射器组成,该辐射器由四个弧形槽和中心方形槽,缩小的接地平面以及用于馈电的微带线组成。通过连接到微带线的标准50ΩRF传输线,符合阻抗要求的SMA连接器来激励贴片天线。来自数值模拟的最佳参数尺寸用于在ε_(r)= 10.0的定制陶瓷填充生物聚合物基板上构造物理原型。根据仿真结果,对实验数据进行收集,分析和比较;讨论了贴片,增益和辐射方向图上的表面电流分布。测量结果表明,小于-10 dB的S11的阻抗带宽在0.788 GHz频段为712 MHz,在3.34 GHz频段为1.38 GHz,在8.01 GHz频段为2.46 GHz。天线的良好辐射方向图性能,几乎稳定的增益以及可观的带宽推荐用于RFID,WiMAX和C / X波段应用的天线。

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