Raza Muhammad Usman, Ren Hongwei, Yan Sen
School of Information and Communications Engineering, Xi'an Jiaotong University, Xi'an 710049, China.
Sensors (Basel). 2024 Sep 12;24(18):5913. doi: 10.3390/s24185913.
This study proposes a compact, low-profile, four-port dual-band monopole multiple-input-multiple-output (MIMO) antenna array for unmanned aerial vehicle (UAV) communication systems. Each monopole antenna of the array features a modified T-shaped radiator configuration and is printed on a Rogers RT5880 substrate with compact dimensions of 134.96 mm × 134.96 mm × 0.8 mm. A four-element square MIMO configuration with sequential 0°, 90°, 180°, and 270° rotations was integrated smoothly into the UAV body. A prototype of the MIMO array was fabricated and experimentally evaluated, with measured results showing a close correlation to simulated results. The proposed dual-band monopole antenna demonstrated one of the widest impedance bandwidths of 46.15% at 2.4 GHz (2.04 to 3.25 GHz) IEEE 802.11b and 31.85% at 5.8 GHz (5.37 to 7.38 GHz) IEEE 802.11a on a thin 0.0064 λ substrate while achieving high transmission efficiency. The isolation of the proposed four-port MIMO design was measured at 23 dB at 2.4 GHz and 19 dB at 5.8 GHz. The MIMO array's total efficiency of each monopole antenna was measured at 96% at 2.4 GHz and 89% at 5.8 GHz. The design has measured diversity parameters such as an ECC below 0.01 and a DG of approximately 10. Based on these results, the proposed design suits the UAV communication system.
本研究提出了一种用于无人机(UAV)通信系统的紧凑、低剖面、四端口双频单极多输入多输出(MIMO)天线阵列。该阵列的每个单极天线采用改进的T形辐射器结构,印刷在尺寸紧凑的罗杰斯RT5880基板上,尺寸为134.96 mm×134.96 mm×0.8 mm。具有0°、90°、180°和270°顺序旋转的四元方形MIMO结构被顺利集成到无人机机身中。制作了MIMO阵列的原型并进行了实验评估,测量结果与模拟结果密切相关。所提出的双频单极天线在厚度为0.0064λ的基板上,在2.4 GHz(2.04至3.25 GHz)IEEE 802.11b频段展示了46.15%的最宽阻抗带宽之一,在5.8 GHz(5.37至7.38 GHz)IEEE 802.11a频段展示了31.85%的最宽阻抗带宽之一,同时实现了高传输效率。所提出的四端口MIMO设计在2.4 GHz时的隔离度测量值为23 dB,在5.8 GHz时为19 dB。每个单极天线的MIMO阵列总效率在2.4 GHz时测量值为96%,在5.8 GHz时为89%。该设计测量了分集参数,如低于0.01的ECC和约为10的DG。基于这些结果,所提出的设计适用于无人机通信系统。