Miniature wide-band microstrip patch antennas for GSM applications : A parametric study and optimum design

A. Nandgaonkar, S. Deosarkar, S. Shirbahadurkar
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Abstract

Microstrip Antennas (MSAs) consist of a metallic radiating patch on one side of thin dielectric substrate and other side is ground plane. Most important advantages of MSAs are low profile, light weight and compatibility with integrated circuit technology. MSAs are used in mobile communication, satellite communication, radar, direct broadcasting, global positioning systems and remote sensing. The major limitations of microstrip antennas are their narrow impedance bandwidth, small gain and low power handling capability. In this paper, we designed full and half U slot MSAs (0.8 to 1.4 GHz) with shorting wall used between non radiating edge of MSAs and ground plane. The behavior of full and half structure is similar with slight change in center frequency. The feed is optimized in such a way to get the maximum bandwidth. We have studied effect of thickness of substrate, length, width and dielectric constant on the performance of full U slot MSAs. The U-slot and Half U-slot MSAs with shorting wall has been simulated in IE3D and experimental results are verified on Agilent VNA E5062A.
GSM应用的微型宽带微带贴片天线:参数化研究与优化设计
微带天线是在薄介质基板的一侧是金属辐射贴片,另一侧是接地面。msa最重要的优点是外形低、重量轻、兼容集成电路技术。msa用于移动通信、卫星通信、雷达、直接广播、全球定位系统和遥感。微带天线的主要缺点是阻抗带宽窄、增益小、功率处理能力低。在本文中,我们设计了全U和半U槽msa (0.8 ~ 1.4 GHz),在msa的非辐射边缘和接地面之间使用了短壁。全结构和半结构的性能相似,中心频率变化不大。提要以这种方式进行优化以获得最大带宽。研究了衬底厚度、长度、宽度和介电常数对全U槽msa性能的影响。在IE3D中对带短壁的u型槽和半u型槽msa进行了仿真,并在Agilent VNA E5062A上对实验结果进行了验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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