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基于混合超表面的宽带高增益隐身天线。

Hybrid metasurface-based broadband high gain stealth antenna.

作者信息

Wang Zanyang, Wang Guangming, Cui Xingshuo, Bai Hao

出版信息

Opt Express. 2022 Aug 29;30(18):32833-32846. doi: 10.1364/OE.470540.

Abstract

In this paper, a novel hybrid metasurface (HMS) is proposed for reducing antenna RCS and maintaining the gain of the antenna. The HMS consists of a polarization-selective absorbing surface (PSAS) and an asymmetric transmission metasurface (ATMS). PSAS can absorb the in-band and out-of-band x-polarized waves, while completely transmitting y-polarized waves. The out-of-band y-polarized waves transmitting the PSAS is reflected by the ATMS with 90° polarization rotation when the ATMS is located under the PSAS, and the reflected wave is absorbed by the PSAS. The in-band y-polarized wave passing through the PSAS can completely pass through the ATMS and the antenna array. Thus the RCS reduction of the antenna can be achieved. Based on antenna reciprocity principle, the in-band y-polarized wave radiated by the metasurface lens antenna can completely pass through the HMS. The measurement results show that the antenna RCS is significantly reduced for x-polarized and y-polarized incident waves in 8∼18 GHz. The 3 dB gain relative bandwidth of stealth antenna is 40% (8∼12 GHz). The realized gain of the antenna at the center frequency reaches 26.3 dB. It is noteworthy that the stealth antenna balances both radiation performance and scattering performance, which makes it have the merits of high gain and excellent stealth performance simultaneously.

摘要

本文提出了一种新型混合超表面(HMS),用于降低天线雷达散射截面(RCS)并保持天线增益。该HMS由一个偏振选择吸收表面(PSAS)和一个非对称传输超表面(ATMS)组成。PSAS可以吸收带内和带外的x偏振波,同时完全透射y偏振波。当ATMS位于PSAS下方时,透射过PSAS的带外y偏振波被ATMS以90°偏振旋转反射,反射波被PSAS吸收。透射过PSAS的带内y偏振波可以完全穿过ATMS和天线阵列。这样就可以实现天线RCS的降低。基于天线互易原理,超表面透镜天线辐射的带内y偏振波可以完全穿过HMS。测量结果表明,在8~18 GHz频段内,对于x偏振和y偏振入射波,天线RCS都显著降低。隐身天线的3 dB增益相对带宽为40%(8~12 GHz)。天线在中心频率处的实现增益达到26.3 dB。值得注意的是,该隐身天线兼顾了辐射性能和散射性能,使其同时具有高增益和优异隐身性能的优点。

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