首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >A frequency-scanning antenna based on hybridization of the quasi-TEM mode and spoof surface plasmon polaritons mode
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A frequency-scanning antenna based on hybridization of the quasi-TEM mode and spoof surface plasmon polaritons mode

机译:基于准TEM模式的杂交和欺骗曲面等离子体偏差模式的频率扫描天线

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摘要

In this letter, we propose the design of a frequency scanning antenna (FSA) based on a hybrid mode of a quasi-TEM mode and a spoof surface plasmon polaritons (SSPPs) mode. The two modes are hybridized using a partially grounded comb-shape microstrip (CSM) structure, a combination of conventional microstrip line and the comb-like structure, the former of which supports propagation of quasi-TEM mode while the latter SSPPs mode. The CSM modulated by periodical radiating elements can achieve wide-angle frequency scanning antennas. Since the dispersion curve of the hybrid mode on CSM lies below that of pure microstrip lines, a larger phase shift can be achieved within the same propagation length than for pure microstrip lines. This is favorable for wide-angle scanning in a narrower bandwidth, so as to take up less spectrum resource. Moreover, dispersion of the hybrid mode can be engineered so that linear frequency scanning can be realized approximately. As an example, an X-band FSA was designed, fabricated and measured. The simulated and measured results agree well, and show that the prototype can achieve +/- 60 degrees scanning in 8.5-12.5 GHz. In particular, the scanning angles within [-40 degrees, +40 degrees] are linearly proportional to frequency in 9.0-12.0 GHz, with an average gain of about 14 dB and a half-power beam-width of 6 degrees. Moreover, due to the usage of radiating elements with smoothly-varying strip-widths, the open stopband is suppressed and there is no degradation for radiation at the broadside. This work provides an alternative method of designing wide-angle FSAs that may find applications in spectral analysis, direction of arrival estimation, etc.
机译:在这封信中,我们提出了基于准TEM模式的混合模式和欺骗曲面等离子体Polaritons(SSPPS)模式的频率扫描天线(FSA)的设计。两种模式使用部分接地的梳形微带(CSM)结构,传统微带线和梳状结构的组合杂交,其以前的前者支持后者SSPPS模式而在后TEM模式的传播。由周期性辐射元件调制的CSM可以实现广角频率扫描天线。由于CSM上的混合模式的色散曲线位于纯微带线的低于,因此可以在与纯微带线相同的传播长度内实现更大的相移。这有利于在较窄的带宽中进行广角扫描,从而占用较少的频谱资源。此外,可以设计混合模式的分散,使得可以大致实现线性频率扫描。例如,设计,制造和测量X波段FSA。模拟和测量结果同意,并表明原型​​可以在8.5-12.5 GHz中实现+/- 60度扫描。特别地,[-40度,+ 40度]内的扫描角度与9.0-12.0GHz的频率线性成比例,平均增益约为14dB,半功率束宽度为6度。此外,由于使用具有平滑变化的条带宽的辐射元件,抑制开口止块,并且在宽边辐射没有降低。这项工作提供了一种设计广角FSA的替代方法,可以在光谱分析,到达方向估计等中找到应用。

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