Design and Optimization of Circular Microstrip Patch Antenna at 2.4 GHz for Different Wireless Applications

Ali H. Khidhir
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Abstract

In this paper, the required antenna was designed and simulated using mathematical equations and algorithms for the maximum accuracy of the required frequency. As well as using the MATLAB programming language to program and design a graphical interface that calculates the basic measurements required by the graphical user interface development environment (GUIDE) for there quired antenna design. Also, the use of computer simulation technology software for the simulation process to design the required model and test it virtually before implementation. As a result, the most important parameters that describe the quality and efficiency of the antenna used were calculated and studied. These parameters are return loss, standing wave voltage ratio, input impedance which are very important for antenna work, frequency bandwidth of the signal used. These values are -47.008702 dB, VSWR of 1.0089659, input impedance of 50.233036 Ω, and bandwidth of 51.4 MHz (ranging from 2.3747 to 2.4261 GHz) respectively, which operating at 2.4 GHz for there sonant frequency used.
2.4 GHz环形微带贴片天线的设计与优化
本文采用数学方程和算法对所需天线进行了设计和仿真,以达到所需频率的最大精度。并使用MATLAB编程语言编写和设计图形界面,计算所需天线设计所需的图形用户界面开发环境(GUIDE)的基本测量值。同时,利用计算机仿真技术软件对仿真过程进行设计所需的模型,并在实现前进行虚拟测试。结果,对描述所使用天线质量和效率的最重要参数进行了计算和研究。这些参数包括回波损耗、驻波电压比、对天线工作非常重要的输入阻抗、所用信号的频宽。这些值分别为-47.008702 dB, VSWR为1.0089659,输入阻抗为50.233036 Ω,带宽为51.4 MHz(范围从2.3747到2.4261 GHz),所使用的噪声频率为2.4 GHz。
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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