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用于毫米波应用的宽带高增益椭圆启发式4×4 MIMO天线。

Wideband and high gain elliptically-inspired 4 × 4 MIMO antenna for millimeter wave applications.

作者信息

Ali Wael A E, Abdelghany Mahmoud A, Ibrahim Ahmed A

机构信息

Department of Electronics & Communications Engineering, College of Engineering and Technology, Arab Academy for Science, Technology and Maritime Transport (AASTMT), Alexandria, Egypt.

Electrical Engineering Department, College of Engineering, Prince Sattam Bin Abdulaziz University, Wadi Addwasir, 11991, Saudi Arabia.

出版信息

Heliyon. 2024 Oct 5;10(20):e38697. doi: 10.1016/j.heliyon.2024.e38697. eCollection 2024 Oct 30.

Abstract

An elliptically-inspired microstrip antenna is utilized in this paper to operate in the V-band (52.9-70 GHz) of the millimeter frequency range for 5G applications. 2-port and 4-port multi-input-multi-output (MIMO) configurations are designed, fabricated, and tested to validate the desired radiation and impedance characteristics. The measured results mimic the simulated ones in terms of scattering parameters, and MIMO parameters. Although the 4-port footprint is considered miniaturized (26 × 26 mm), it provides a reduced coupling between ports (≤20 dB) with an improved gain ranging from 8 to 10.1 dBi. Furthermore, the achieved MIMO parameters (ECC, DG, CCL, and MEG) are distinct with values of 0.006, ≥9.96 dB, ≤0.4 bits/s/Hz, and -3 dB, respectively. The introduced 4-port MIMO antenna is compared with the state-of-the-art antennas and this assures that the suggested model has built-in size, wider impedance bandwidth, and higher isolation with an improved diversity characteristic confirming the possibility of the presented MIMO antenna to be a challenging candidate for 5G wireless communications.

摘要

本文采用一种受椭圆启发的微带天线,在毫米波频段的V波段(52.9 - 70 GHz)工作,用于5G应用。设计、制作并测试了2端口和4端口多输入多输出(MIMO)配置,以验证所需的辐射和阻抗特性。在散射参数和MIMO参数方面,测量结果与模拟结果相似。尽管4端口的尺寸被认为是小型化的(26×26 mm),但它能降低端口间的耦合(≤20 dB),增益提高,范围从8到10.1 dBi。此外,所实现的MIMO参数(ECC、DG、CCL和MEG)分别为0.006、≥9.96 dB、≤0.4 bit/s/Hz和 - 3 dB,各不相同。将引入的4端口MIMO天线与现有天线进行比较,结果表明所提出的模型具有内置尺寸、更宽的阻抗带宽、更高的隔离度以及改进的分集特性,证实了所呈现的MIMO天线有可能成为5G无线通信中具有挑战性的候选方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b03d/11619998/42ae89796f63/gr1.jpg

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