Design and Analysis of Conventional Antennas for the Applications in Millimeter-Waves

Priti Singh, A. Chakraborty, Ashok Yadav
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Abstract

In recent years antennas operating on millimeter-wave frequencies have generated a considerable demand. The various unique applications of millimeter wave antennas along with the availability of the bandwidth makes them a very promising area which is yet to be explored. This paper is for designing of conventional antennas which can work for millimeter wave frequencies. This work includes mathematical analysis and designing of Horn and Yagi-uda antennas for mm-wave and simulation of basic parameters using HFSS. A rectangular shaped slot is incorporated into patch, and antenna structure is used as a patch with coplanar waveguide (CPW) as a feeding structure. A brief mathematical theory of both antennas, software introduction, design, applications and variations between calculated and observed values will be discussed along the result of our design. Our results and analysis show that the antennas are showing significant gain, so they can be applied for the applications we are aiming for.
毫米波应用中传统天线的设计与分析
近年来,在毫米波频率上工作的天线产生了相当大的需求。毫米波天线的各种独特应用以及带宽的可用性使其成为一个非常有前途的有待探索的领域。本文是针对毫米波频率下传统天线的设计。本文的工作包括霍恩天线和八田天线的毫米波数学分析和设计,以及HFSS对天线基本参数的仿真。在贴片中加入矩形槽,采用天线结构作为贴片,共面波导(CPW)作为馈电结构。本文将简要介绍两种天线的数学理论、软件介绍、设计、应用以及计算值和观测值之间的变化。我们的结果和分析表明,天线显示出显着的增益,因此它们可以应用于我们的目标应用。
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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