Cao Yue, Zhang Miaojuan, Fan Chong, Chen Jian-Xin
School of Information Science and Technology, Nantong University, Nantong 226019, China.
Guangdong Provincial Key Laboratory of Millimeter-Wave and Terahertz, School of Electronic and Information Engineering, South China University of Technology, Guangzhou 510641, China.
Micromachines (Basel). 2024 Mar 13;15(3):383. doi: 10.3390/mi15030383.
In this manuscript, a broadband transmitarray antenna (TA) using a metasurface-based element is presented for millimeter-wave communication applications. The metasurface-based TA element adopts a receiver-transmitter configuration: metasurfaces are applied as the receiver and transmitter, and slot-coupled differentially fed striplines are used as the phase compensation. The designed TA element achieves good transmission performance with a more than 360° transmission phase shift range and less than 1-dB transmission insertion loss within a wide frequency range. To verify the proposed TA, a prototype is fabricated based on the conventional printed circuit board (PCB) process, and a pyramid horn is designed as the source. The measured results show that the proposed TA with the differential feed network presents a 1-dB gain bandwidth of 26.2% from 23.5 to 30.5 GHz and a peak gain of 24.5 dBi. The designed TA is a promising alternative for millimeter-wave communications applications because of its high gain, broad bandwidth, low costs, and convenient integration with other circuits.
在本论文中,提出了一种用于毫米波通信应用的基于超表面单元的宽带发射阵列天线(TA)。基于超表面的TA单元采用收发配置:超表面用作接收器和发射器,缝隙耦合差分馈电带状线用作相位补偿。所设计的TA单元在宽频率范围内实现了良好的传输性能,传输相移范围超过360°,传输插入损耗小于1dB。为了验证所提出的TA,基于传统印刷电路板(PCB)工艺制作了一个原型,并设计了一个金字塔形喇叭作为源。测量结果表明,具有差分馈电网络的所提出的TA在23.5至30.5GHz范围内的1dB增益带宽为26.2%,峰值增益为24.5dBi。所设计的TA因其高增益、宽带宽、低成本以及与其他电路方便集成,是毫米波通信应用中一种有前景的替代方案。