Alanazi Meshari D, Ali Wael A E, Ameen Allam M, Ibrahim Ahmed A, Yousef Basma M
Electrical Engineering Department, College of Engineering, Jouf University, Sakaka, Al Jouf, 72388, Saudi Arabia.
Department of Electronics & Communications Engineering, College of Engineering and Technology, Arab Academy for Science, Technology and Maritime Transport (AASTMT), Alexandria, Egypt.
Heliyon. 2024 Jun 17;10(12):e33021. doi: 10.1016/j.heliyon.2024.e33021. eCollection 2024 Jun 30.
This article describes the design and fabrication of a 4 × 4 MIMO antenna array intended for operation at 60 GHz. The antenna comprises of half-circular p-shaped radiator connected with a microstrip line printed on the Rogers 4003 substrate of area 22.5 × 22.5 mm with ε, thickness, and tan δ of 3.5, 0.203 mm, and 0.0027, respectively. This single radiator is doubled and connected to the power divider to obtain a 1 × 2 antenna array for gain enhancement purposes. The array model is duplicated on the same substrate to achieve 2 ports and 4 ports MIMO antenna. Thereafter, the model is experimentally fabricated and tested to validate the simulated results. The measured results demonstrate the antenna's 60 GHz operating bandwidth extended from 57 GHz to 63 GHz and with insertion losses ≤ -30 dB between ports (1,2) and (1,4) (the orthogonal ports), while it equals around ≤ -23 dB between ports (1,3) (the mirrored ports) within the achieved band with good consistency between both simulated and tested results. Also, it has achieved a gain of more than 9 dBi at 60 GHz with a broadside radiation pattern in both planes. Furthermore, the MIMO parameters are also carried out (ECC, DG, CCL, MEG, and TARC). The ECC is below 0.0025, the DG is approximately 10 dB, the CCL is below 0.2 bits/s/Hz, the MEG is -3 dB and the TARC is below -10 dB over the achieved frequency band. All the MIMO parameters are investigated to prove the diversity characteristics of the antenna array which supports the antenna to be suitable for the 60 GHz communication.
本文介绍了一款旨在工作于60GHz的4×4 MIMO天线阵列的设计与制造。该天线由一个半圆形p形辐射器组成,其与印刷在面积为22.5×22.5mm的Rogers 4003基板上的微带线相连,该基板的相对介电常数ε、厚度和损耗角正切tan δ分别为3.5、0.203mm和0.0027。这个单个辐射器翻倍并连接到功率分配器,以获得一个1×2天线阵列用于增益增强目的。该阵列模型在同一基板上复制,以实现2端口和4端口的MIMO天线。此后,对该模型进行实验制作和测试,以验证模拟结果。测量结果表明,该天线在60GHz的工作带宽从57GHz扩展到63GHz,在端口(1,2)和(1,4)(正交端口)之间的插入损耗≤ -30dB,而在端口(1,3)(镜像端口)之间在实现的频段内约为≤ -23dB,模拟结果和测试结果之间具有良好的一致性。此外,它在60GHz时实现了超过9dBi的增益,在两个平面上具有宽边辐射方向图。此外,还进行了MIMO参数(ECC、DG、CCL、MEG和TARC)的测量。在实现的频段内,ECC低于0.0025,DG约为10dB,CCL低于0.2比特/秒/赫兹,MEG为-3dB,TARC低于-10dB。对所有MIMO参数进行了研究,以证明天线阵列的分集特性,这支持该天线适用于60GHz通信。