方形螺旋微带贴片天线

Anum Zulqarnain, Quratulain, Ramlah Baber, Sarah Saeed
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引用次数: 0

摘要

本课题描述了多频带频率方形螺旋微带贴片天线的分析与设计。与传统的微带贴片天线相比,微带贴片天线具有更多的优势和更好的应用前景。这种天线重量轻,圆极化,易于制造。它们的尺寸更小,体积更小。在“计算机仿真技术(CST)”软件上进行了仿真,并实现了项目硬件。仿真和硬件结果都显示了两个不同频率的陷波;在我们2.4GHz的工作频率下存在相当深的陷波。辐射模式显示有一个主叶而没有副叶。此外,我们设计的天线在50欧姆时具有良好的阻抗匹配,可接受的增益,指向性和回波损耗,较小的反射系数,理想的s参数和驻波比,工作频率和带宽的辐射方向图。根据上述实验结果,我们可以说我们的天线是针对多频段频率制作的。更少的反射导致更多的能量传输。侧瓣的缺失和主瓣的存在表明所有入射波在正向传播时能量损耗最小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Square Spiral Microstrip Patch Antenna
Our project describes the analysis and design of square spiral microstrip patch antenna for multi band frequencies. As compared with old conventional antennae, microstrip patch antennae have more advantages and better prospects. Such antennae are light-weighted, circularly polarized and can be easily fabricated. They have smaller dimensions and lower volume. Simulation is done on ‘Computer Simulation Technology (CST)’ software and project hardware are implemented as well. Both simulation and hardware results show notches at two different frequencies; quite deep notch is present at our operating frequency of 2.4GHz. The radiation pattern shows one main lobe and no side lobes. Moreover, our designed antenna shows good impedance matching at 50ohm, accepted gain, directivity and return loss, less reflection coefficient, desirable s-parameter and VSWR, radiation pattern for operating frequency and bandwidth. In the light of above-mentioned experiment outcomes, we can say that our antenna is fabricated for multiband frequencies. Less reflection leads to more power transmission. Absence of side lobes and presence of main lobe indicates minimum wastage of energy with all incoming wave propagating in forward direction.
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