用于多波束应用的低轮廓调制超表面天线

Yubo Wen, P. Qin, Y. Guo
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引用次数: 0

摘要

调制超表面被认为是低轮廓多波束天线的理想选择。通常采用不同波束的所有阻抗调制叠加的方法。然而,这种方法的局限性在于,由于不同阻抗调制的相互干扰,产生的波束数量非常少,这将导致低增益和高旁瓣电平。研究发现,每个波束的源位置在抑制干扰方面起着关键作用。本文不再采用耗时的基于全波模拟的优化方法,而是利用表面电流的零阶近似计算出的孔径场来获得最优的源位置。为了验证设计概念,设计、制造和测量了一个五波束调制超表面天线,其角度覆盖范围可达±30°。仿真结果与实测结果吻合较好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Low Profile Modulated Metasurface Antenna for Multi-Beam Applications
Modulated metasurface is considered as a good candidate for low-profile multi-beam antennas. Usually, a superposition method of all impedance modulations for different beams is used. However, a limitation of this method is that a very small number of beams can be generated due to the mutual interference of different impedance modulations, which will lead to low gains and high side lobe levels. It is found that the source locations for each beam play a key role in interference suppression. In this paper, instead of using the time consuming full-wave simulation-based optimization, the optimal source locations are obtained by using the aperture fields calculated from the zeroth-order approximation of the currents on the surface. To verify the design concept, a five-beam modulated metasurface antenna has been designed, fabricated and measured, providing an angular coverage up to ±30°. Good agreement between the simulation and measurement has been obtained.
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