基于槽对的双频微带贴片天线设计与优化

Adelah Abdulateef Mahdi Alsaleh, M. R. Islam, M. Nordin, Shadi Al-Askari
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引用次数: 8

摘要

在当今的通信工程中,通信链路要求天线能够在多个应用频段工作。带微带贴片的多波段天线基本上是为移动和航空航天应用而设计的,其原因是这些天线具有非常轻的重量,低轮廓和低功耗。这些天线有许多形状,以获得所需的带宽和增益。本文试图利用文献中提出的多波段设计公式来设计微带贴片天线以实现双频工作。1.8 GHz和2.4 GHz两个频率设计用于移动和无线局域网应用。利用计算机仿真技术CST电磁模拟器对天线进行了设计和优化。通过非常简单的槽对几何结构,实现了理想的双频带。在实验室中利用矢量网络分析仪(VNA)制作并测试了一对槽天线。试验结果与仿真结果吻合较好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and Optimization of Dual Band Microstip Patch Antenna Using Slots Pair
In the recent communication engineering, communication links require antennas which can operate more than one application band. Multiband antennas with microstrip patch are designed basically for mobile and aerospace applications, the reasons for that is that these antennas have very light weight, low profile and low power consumption. These antennas have many shapes to get the bandwidth and the gain required. This paper attempts to design Microstrip Patch Antenna to facilitate dual band operation using multiband design formula proposed in literature. Two frequencies of 1.8 and 2.4 GHz were designed for mobile and wireless LAN applications. Antenna has been designed and optimized using computer simulation technology CST electromagnetic simulator. Desired dual band has been achieved by very simple geometry of pair of slots. Pair of slots antenna has been fabricated and tested using vector network analyzer (VNA) in the Lab. Test result is found very good agreement with simulated result.
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