通过尺寸和基板优化微带天线的系统设计

Aaron Don M. Africa, S. A. Pasia, Jereme Adriane Sy
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引用次数: 0

摘要

微带天线在过去 25 年中不断发展和完善。在这些年里,微带天线的局限性和规格得到了克服和显著改善。众所周知,微带天线具有外形小巧、适合移动和重量轻的特点,是本研究的重点。在本文中,研究人员设计了一种具有不同长度和基底的微带天线。他们测试了不同长度微带天线的变化和影响,以及改变基板的情况。为了验证差异,研究人员比较了每个测试长度和改变基底的性能参数最大增益(dBi)、最小增益(dBi)和 S11 图。通过 MATLAB 使用粗糙集理论确定了最佳设计。在此基础上,研究人员对收集到的结果进行了分析,并得出了各自的结论。此外,他们还查看并比较了每个数据结果,以了解哪种天线具有最佳性能参数。从结果来看,尺寸的改变会导致上述性能参数的降低。此外,基板厚度的变化也会减少这些变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
System design of a microstrip antenna by dimension and substrates optimization
The microstrip antennas matured and improved over the last 25 years. Throughout these years, the limitations, and specifications of the said antennas have been overcome and significantly improved. Known to be lowprofile, suitable for mobile, and lightweight, these microstrip antennas are the focus of this research. In this paper, the researchers designed a microstrip antenna with varying lengths and substrates. They tested the changes and the effects in microstrip antennas of different lengths, along with altering substrates. To verify the differences, the researchers compared the performance parameters maximum gain (dBi), minimum gain (dBi), and S11 graph on each tested length and changed substrate. The rough set theory was used to determine the optimal design via MATLAB. From there, the researchers analyzed the results gathered and drew their respective conclusions. Additionally, they saw and compared each data result to know what antenna has the best performance parameters. From the results, a change in the dimension will result in a decrease in the said performance parameters. Furthermore, the change in substrate thickness also diminishes these changes.
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