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Aperture coupled microstrip antenna array integrated with DGS and parasitic elements

机译:光圈耦合微带天线阵列与DGS和寄生元件集成

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This paper presents a novel design of aperture coupled microstrip antenna (ACMSA) integrated with DGS and parasitic elements. The basic design of the proposed antenna is 2 by 2 planar array with aperture coupler feeding technique. Four dumbbell-shaped DGS are etched on the ground plane, for back radiation reduction, which is sandwiched between the upper and lower substrates. Both of the substrates are Rogers Duroid 5880 of thickness 0.767mm with dielectric constant of 2.2. Twelve trapezoidal-shaped parasitic elements are placed onto the first substrate, three besides each patch, for gain enhancement. The antenna design is simulated in CST Microwave Studio 2011 software based on operating frequency of 5.8GHz. The results show that back lobe level is reduced from 4.6dB to 0.1331dB. With the parasitic element, the gain of the antenna which was dropped, from 11.8dB to 11.2dB when DGS is added, is improved to 11.5dB. Reflection coefficient for the antenna is −27.50dB. This design concept can be useful in reducing the back radiation of aperture coupled microstrip antenna.
机译:本文介绍了与DGS和寄生元件集成的孔径耦合微带天线(ACMSA)的新颖设计。所提出的天线的基本设计是2乘2乘2个平面阵列,具有光圈耦合器进给技术。在接地平面上蚀刻四个哑铃形DG,用于缩小辐射减少,其夹在上部和下基板之间。两个基材都以厚度为0.767mm的毛叶,介电常数为2.2。将十二个梯形寄生元件置于除了每种贴剂之外的第一基板上,用于增强。基于5.8GHz的工作频率,在CST微波Studio 2011软件中模拟了天线设计。结果表明,后叶水平从4.6db减少到0.1331dB。利用寄生元件,当加入DGS时,从11.8db到11.2db下降的天线的增益得到改善为11.5dB。天线的反射系数为-27.50dB。该设计概念可用于减少孔径耦合微带天线的后辐射。

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