Wójcik Dariusz, Surma Maciej, Noga Artur, Magnuski Mirosław
Department of Electronics, Electrical Engineering and Microelectronics, Silesian University of Technology, Akademicka 16, 44-100 Gliwice, Poland.
Sensors (Basel). 2020 Oct 27;20(21):6105. doi: 10.3390/s20216105.
The paper describes the process of designing a dual-polarised linear antenna array with enhanced port-to-port isolation, with the example of a four-element array with isolation better than 60 dB for the U-NII 5.15-5.925 GHz band. As a single antenna, dual-polarised electromagnetically coupled microstrip antennas were used with port-to-port isolation not exceeding 25 dB. A significant improvement in the isolation of the array was achieved thanks to the application of a dedicated feeding network. On the basis of theoretical analysis, a mathematical model describing port-to-port isolation was developed. Circuit and full-wave simulations were carried out to show the influence of electromagnetic couplings between antennas and/or the microstrip lines of the feeding network and the selection of phase shifters/power dividers on the isolation. The fabricated prototype is characterised by a gain of about 14 dBi, polarisation purity of at least -27 dB within the main lobe and close to expectations isolation better than 57 dB within the whole operational band.
本文以一个四元阵列为例,描述了一种具有增强端口到端口隔离度的双极化线性天线阵列的设计过程,该阵列在5.15 - 5.925 GHz的U-NII频段内隔离度优于60 dB。作为单个天线,采用了端口到端口隔离度不超过25 dB的双极化电磁耦合微带天线。由于应用了专用馈电网络,阵列的隔离度有了显著提高。在理论分析的基础上,建立了描述端口到端口隔离度的数学模型。进行了电路和全波仿真,以展示天线和/或馈电网络微带线之间的电磁耦合以及移相器/功率分配器的选择对隔离度的影响。所制作的原型具有约14 dBi的增益、主瓣内至少-27 dB的极化纯度以及在整个工作频段内接近预期的优于57 dB的隔离度。