Chen Qiang, Yang Jun, He Changhui, Zhang Di, Huang Siyu, Wang Min, Yu Fangli, Dai Guanghua
Air Force Early Warning Academy, Wuhan 430019, China.
Sensors (Basel). 2024 May 29;24(11):3510. doi: 10.3390/s24113510.
In this paper, a patch array antenna with wideband circular polarization and high gain is proposed by utilizing a hybrid metasurface (MS). A corner-cut slotted patch antenna was chosen as the source due to the possible generation of CP mode. The hybrid MS (HMS), consisting of a receiver MS (RMS) arranged in a 2 × 2 array of squared patches and a linear-to-circular polarization conversion (LCPC) MS surrounding it was then utilized as the superstrate driven by the source. The LCPC MS cell is a squared-corner-cut patch with a 45° oblique slot etched, which has the capability for wideband LCPC. The LCPC unit cell possesses wideband PC capabilities, as demonstrated by the surface current analysis and S-parameter simulations conducted using a Floquet-port setup. The LP EM wave radiated by the source antenna was initially received by the RMS, then converted to a CP wave as it passed through the LCPC MS, and ultimately propagated into space. To further enhance the LCPC properties, an improved HMS (IHMS) was then proposed with four cells cut at the corners, based on the original HMS design. To verify this design, both CMA and E-field were utilized to analyze the three MSs, indicating that the IHMS possessed a wideband LCPC capability compared to the other two MSs. The proposed antenna was then arranged in a 2 × 2 array with sequential rotation to further enhance its properties. As demonstrated by the measurements, the array antenna achieved an S11 bandwidth of 60.5%, a 3 dB AR bandwidth of 2.85 GHz, and a peak gain of 15.1 dBic, all while maintaining a low profile of only 0.09λ.
本文提出了一种利用混合超表面(MS)的具有宽带圆极化和高增益的贴片阵列天线。由于可能产生圆极化(CP)模式,选择了一种切角开槽贴片天线作为源天线。然后,由方形贴片的2×2阵列排列的接收超表面(RMS)和围绕它的线性到圆极化转换(LCPC)超表面组成的混合超表面(HMS)被用作由源驱动的覆盖层。LCPC超表面单元是一个蚀刻有45°斜槽的切角方形贴片,具有宽带LCPC能力。通过使用弗洛凯端口设置进行的表面电流分析和S参数模拟表明,LCPC单元具有宽带极化转换(PC)能力。源天线辐射的线性极化(LP)电磁波首先被RMS接收,然后在通过LCPC超表面时转换为CP波,最终传播到空间中。为了进一步增强LCPC特性,基于原始的HMS设计,提出了一种改进的HMS(IHMS),其四个角被切割。为了验证该设计,利用共形映射分析(CMA)和电场(E场)对三种超表面进行了分析,表示与其他两种超表面相比,IHMS具有宽带LCPC能力。然后将所提出的天线以顺序旋转的方式排列成2×2阵列,以进一步增强其性能。测量结果表明,该阵列天线实现了60.5%的S11带宽、2.85 GHz的3 dB轴比(AR)带宽和15.1 dBic的峰值增益,同时保持仅0.09λ的低剖面。