利用微带到槽线过渡的维瓦尔第天线的特性

D. Burrell, J. Aberle
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引用次数: 16

摘要

为了最大限度地发挥集成电路技术的优势,锥形缝隙天线应选择完全平面的几何结构。这就是为什么在本研究中使用的过渡是微带到槽线,而不是鳍线到槽线或其他一些非平面过渡。作者研究了不同长度和输出宽度的维瓦尔第天线的微带到槽线的过渡,并报告了实验结果。维瓦尔第天线的设计工作频率为10ghz,并在Duroid 5870上制造。给出了优化后的E面和h面天线的指向性。指向性值与F.J. Zucker(1961)绘制的曲线比较有利,该曲线是确定锥形缝隙天线的性能是否与优化的行波天线一样好的标准。
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Characterization of Vivaldi antennas utilizing a microstrip-to-slotline transition
To take maximum advantage of integrated circuit techniques, completely planar geometry should be chosen for tapered slot antennas. This is the reason that the transition used in the present study is microstrip-to-slotline instead of finline to slotline or some other nonplanar transition. The authors investigate the microstrip-to-slotline transition and report on experimental results for Vivaldi antennas of various lengths and output widths. The Vivaldi antennas were designed to operate at 10 GHz and fabricated on Duroid 5870. The directivity in the E- and H-plane for the optimized antenna is shown. The values for the directivity compared favorably to the curves produced by F.J. Zucker (1961) which are the standards for determining whether tapered slot antennas behave as well as optimized traveling-wave antennas.<>
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