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首页> 外文期刊>Antennas and Propagation, IEEE Transactions on >Phase- and Amplitude-Control Metasurfaces for Antenna Main-Lobe and Sidelobe Manipulations
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Phase- and Amplitude-Control Metasurfaces for Antenna Main-Lobe and Sidelobe Manipulations

机译:天线主瓣和旁瓣操纵的相位和幅度控制超表面

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摘要

The metasurface (MS) antenna is an important microwave component in the communication system due to its unique beam radiation capability. However, current studies mainly pay attention to improve the performance of the main lobe of the MS antenna, leaving the sidelobe unexplored although it is also essential in some practical applications. In this paper, several phaseand amplitude-control reflected MSs have been proposed to simultaneously manipulate the antenna's main lobe and sidelobes. The MSs consist of modified I-shaped particles which can independently manipulate the phases and amplitudes of the cross-polarization waves by changing the split size and orientation, respectively. A focusing phase distribution and different Taylor amplitude distributions have been fixed on the MSs. By illuminating the MSs with a self-made antenna, we have successfully designed four MS antennas. For the first antenna, we solely pay attention to improve the main lobe and achieve a high gain of 20.7 dB at 10 GHz. For the other three antennas, we also aim to manipulate their sidelobes. The resultant sidelobe levels (SLLs) are about -25 dB in the xoz plane for the second antenna, -29 dB in the yoz plane for the third antenna, and both of the former two characteristics for the fourth antenna. Compared with the first MS antenna, the last three antennas suffer from gain reductions of 2, 1.7, and 3 dB, respectively. These proposed MS antennas provide a new way to manipulate both main-lobe levels and SLLs and also greatly promote the integration of MSs and antennas.
机译:超表面(MS)天线由于其独特的波束辐射能力而成为通信系统中的重要微波组件。但是,当前的研究主要集中在改善MS天线主瓣的性能上,尽管在某些实际应用中这也是必不可少的,但仍未开发旁瓣。在本文中,已经提出了几种相位和幅度控制反射的MS,以同时操纵天线的主瓣和旁瓣。 MS由修饰的I形颗粒组成,这些I形颗粒可以分别通过改变分离的大小和方向来独立地控制交叉极化波的相位和幅度。聚焦相位分布和不同的泰勒振幅分布已固定在MS上。通过用自制天线照亮MS,我们成功设计了四个MS天线。对于第一个天线,我们仅关注改善主瓣并在10 GHz时实现20.7 dB的高增益。对于其他三个天线,我们还旨在操纵它们的旁瓣。对于第二天线,在xoz平面中所得的旁瓣电平(SLLs)约为-25 dB,对于第三天线,在yoz平面中所得的旁瓣电平约为-29 dB,对于第四天线而言,前两种特性均如此。与第一个MS天线相比,后三个天线的增益分别降低了2、1.7和3 dB。这些建议的MS天线为操纵主瓣电平和SLL提供了新的途径,并且极大地促进了MS和天线的集成。

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