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Miniaturization of microstrip antennas using defected ground plane

机译:使用有缺陷的接地层使微带天线小型化

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This work proposes an novel idea of microstrip patch antenna miniaturization using the artificially created defect in the ground plane. A dumbbell shaped defect has been created in the ground plane of inset-fed microstrip patch antenna and its effect on the performance is analyzed. In normal course, a specified inset-fed microstrip patch antenna has shown resonant frequency of 3.6 GHz and defect compels this frequency band to shift towards a lower side. Thereby miniaturization of the antenna is justified. For analyzing miniaturized antennas, a trained artificial neural network was developed by varying the dimensions of the defect. Dimensional parameter of the defect is inputs to ANN module and it delivers the resonance frequency as a response. Theoretically calculated (simulated) results have been compared with the ANN and method is validated.
机译:这项工作提出了一种利用接地平面中人为造成的缺陷使微带贴片天线小型化的新思路。在插入式微带贴片天线的接地平面中已产生哑铃状缺陷,并分析了其对性能的影响。在正常情况下,指定的嵌入式微带贴片天线显示出3.6 GHz的谐振频率,缺陷迫使该频段向较低侧移动。由此证明了天线的小型化。为了分析小型天线,通过改变缺陷的尺寸来开发训练有素的人工神经网络。缺陷的尺寸参数输入到ANN模块,并传递共振频率作为响应。从理论上计算(模拟)的结果已与ANN进行了比较,方法得到了验证。

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