论文标题

用于毫米波应用的170 GHz天线的设计和分析

Design and Analysis of a 170 GHz Antenna for Millimeter-wave Applications

论文作者

Punia, Sheetal, Danani, Suman, Pandya, Hitesh B.

论文摘要

当安装在设备的刚性表面上时,微带贴片天线是低调且健壮的,使其适合通信和毫米波应用。在本文中,天线设计用于使用微带技术的微型化技术和成本效益的微带技术的170 GHz谐振频率。设计的天线是用于安装在Fusion Research Machine Iter上的ECE诊断系统的流浪辐射检测系统的一部分。它提供了低方向的,可以从各个方向接收辐射,高带宽,低侧室级别和-50 dB的返回损失,从而导致其在检测系统中的显着利用,该检测系统的设计旨在保护Iter ECE诊断的毫米波组件。本文还讨论了设计天线的强力处理和功率捕获能力。已经使用CST微波工作室软件进行了远场模拟,以研究设计天线的辐射特性。

Microstrip patch antennas are low-profile and robust when mounted on rigid surfaces of the devices making them suitable for communication and millimeter-wave applications. In this paper, an antenna is designed for the resonant frequency of 170 GHz using microstrip technology concerning its miniaturization and cost-effectiveness. The designed antenna is a part of a stray radiation detection system for ECE diagnostic to be installed on fusion research machine ITER. It offers low-directivity to receive radiation from all directions, high bandwidth, low side-lobe-level and return loss of -50 dB, leading to its remarkable utilization in the detection system being designed to protect millimeter wave components of ITER ECE Diagnostic. Power-handling and power-capturing capability of the designed antenna have also been discussed in the paper. Far-field simulations have been performed using CST Microwave Studio software to study the radiation characteristics of the designed antenna.

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