3.5 GHz固定WiMAX网络环形槽h型平面阵列4元微带天线设计

Ery Safrianti, Yoga '. Yusfarino, Feranita, L. O. Sari
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引用次数: 3

摘要

固定WiMAX网络接入需要CPE (Customer Premise Equipment)设备,CPE采用小型且易于集成的天线。本研究将设计一种4元微带天线,采用h形贴片,在中心增加一个圆槽。天线用于固定WiMAX CPE应用,工作频率为3.5 GHz (3.4-3.6 GHz)。所使用的衬底是介电常数为4.4的FR4和介电常数为2.2的Duroid。采用微带线馈电技术。利用数学方程确定天线尺寸。结果设计采用软件仿真得到采用FR4的VSWR天线为1.013,回波损耗为−43.803 dB,增益为4.7083。而采用Duroid衬底的VSWR天线为1.015,回波损耗为- 42.5923 dB,增益为8,486 dB。矩形和圆形狭缝尺寸的特性影响工作频率范围。基于FR4基板的天线在宽度为4mm、4.5 mm和5mm的矩形条纹特征下的最佳工作频率为2-3 mm。Duroid基板设计天线具有最佳工作频率,其矩形片特性为5mm、5.5 mm和6mm,槽尺寸为4 - 5mm。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Microstrip Antenna Design H-Shaped Planar Array 4 Elements Using Circular Slot for Fixed WiMAX Network 3.5 GHz Frequency
Fixed WiMAX network access requires Customer Premise Equipment (CPE) that uses small and easy to integrate antennas. This research will design a 4 element microstrip antenna using an H-shaped patch with the addition of a circular slot in the center. Antennas are used for fixed WiMAX CPE applications at 3.5 GHz (3.4–3.6 GHz) working frequency. The substrate used is FR4 with dielectrics constant 4.4 and Duroid with dielectrics constant 2.2. The feeding technique used is microstrip line. Determination of antenna dimension is done by using mathematical equation. Result design using software simulation obtained VSWR antenna using FR4 was 1.013, return loss −43.803 dB and gain 4.7083. While VSWR antenna using Duroid substrate was 1.015, return loss −42.5923 dB, and gain was 8,486 dB. Characterization of rectangular and circular slot sizes affects the working frequency range. Antenna with FR4 substrate has optimal working frequency on rectangular stripe characterization of 4 mm, 4.5 mm, and 5 mm width with 2–3 mm slot size variation. Duroid substrate design antennas have optimal working frequency with rectangular piece characterization of 5 mm, 5.5 mm, and 6 mm and variations of 4 – 5 mm slot size.
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