The effects of air gap and finite ground plane on radiation characteristics of probe-fed rectangular dielectric resonator antennas using method of moment

R.M. Baghaee, M. H. Neshati, J. R. Mohassel
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引用次数: 3

Abstract

The rigorous moment method analysis of probe-fed rectangular dielectric resonator antenna on a finite ground plane is presented. We modeled the exact structure of coaxial cable and antenna. The antenna, coaxial cable and ground plane are modeled as surface electric currents, but the dielectric resonator and internal dielectric of coaxial cable are assumed as a volume polarization current. The dielectric resonator (DR) is treated via a set of combined field integral equations. The associated coupling is then formulated with sets of integral equations. The coupled integral equations are solved by the method of moments (MoM). The effects of air gap and finite ground plane on resonance frequency, input impedance, E-plane and H-plane patterns and moment current of the objects are presented. Finally, we demonstrate some important conceptual issues for designing and analyzing of RDRA in communication circuits such as mobile systems, IF-amplifiers and phase detection. Our methods and results obtained from the MoM have a very good agreement with measurements and are higher accurate and fast than simulated results with the other softwares.
利用矩量法研究气隙和有限地平面对探针馈电矩形介质谐振器天线辐射特性的影响
提出了有限地平面上探针馈电矩形介质谐振器天线的严格矩量分析方法。我们模拟了同轴电缆和天线的精确结构。将天线、同轴电缆和地平面建模为表面电流,而将介质谐振腔和同轴电缆内部介质假设为体极化电流。用一组组合场积分方程来处理介电谐振腔。然后用一组积分方程来表示相关的耦合。用矩量法求解了耦合积分方程。给出了气隙和有限地平面对物体谐振频率、输入阻抗、e面和h面图形以及力矩电流的影响。最后,我们讨论了在移动系统、中频放大器和相位检测等通信电路中设计和分析RDRA的一些重要概念问题。本文的方法和结果与实测结果吻合较好,比其他软件的模拟结果精度高、速度快。
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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