Incorporation of Spiral Shaped Defected Ground Structure for Improving Radiation Characteristic of Planar Array-Antenna

M. Yunus, Zero Luthfi Patriana, Evyta Wismiana, Teguh Firmasyah, Budi Syihabuddin, A. Munir
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引用次数: 1

Abstract

This paper deals with the incorporation of spiral shaped defected ground structure (DGS) for improving radiation characteristic for planar array-antenna. The proposed planar array-antenna which is intended to operate at the frequency of 2.4GHz is designed on an FR4 epoxy dielectric substrate with the thickness of 1.6 mm and analyzed by use of a simulation software. It consists of 4× 4 elements where the microstrip line inset feeding method is employed to excite each antenna element. The characterization results show that the use of spiral shaped DGS yields the measured radiation characteristic to achieve the gain achievement of 10.47 dBi at the resonant frequency and the −10ddB bandwidth response of 140 MHz. These results are comparable to the simulated ones which are showing the potentiality of spiral shaped DGS incorporation for the radiation characteristics improvement.
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结合螺旋形缺陷地面结构改善平面阵列天线辐射特性
本文研究了利用螺旋形缺陷地面结构改善平面阵列天线的辐射特性。设计了工作频率为2.4GHz的平面阵列天线,并在1.6 mm厚的FR4环氧介质基板上进行了仿真分析。它由4× 4单元组成,其中微带线插入馈电方法用于激励每个天线单元。表征结果表明,使用螺旋形DGS可以获得测量的辐射特性,在谐振频率下获得10.47 dBi的增益,140 MHz的- 10ddB带宽响应。这些结果与模拟结果相比较,显示了螺旋形DGS掺入对改善辐射特性的潜力。
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