This paper introduces a high-performance quad-port Multiple-Input Multiple-Output (MIMO) antenna array for wideband 5G New Radio (NR) (n258, n257, n260, and n261) applications in the millimeter-wave (mmWave) spectrum. The target antenna structure employs a 1âÃâ2 element array design with microstrip line feeding and includes diamond-shaped slots along with defected ground geometry (DGG) to increase bandwidth, gain, and isolation independent of complicated decoupling components. Fabricated on low-loss Rogers RT/Duroid 5880 substrate (εrâ=â2.2, tanδâ=â0.0009), the antenna has an ultrawide operation bandwidth of 24 GHz to 40 GHz with a 50% fractional bandwidth. The measured results show a peak gain of 18.2 dBi and outstanding inter-element isolation of over 44 dB, confirming the potential for interference-free MIMO operation of the antenna. The design also exhibits better diversity performance with an ECC of <â0.0005, diversity gain (DG) of 9.99 dB, and a CCL of <â0.3 bps/Hz, affirming its use in high-capacity, low-latency 5G mmWave systems. In addition, the compact form factor of the antenna (35âÃâ35âÃâ0.254 mm(3)), structural simplicity, and strong performance make it extremely suitable for integration within next-generation IoT platforms, indoor/outdoor wireless systems, and flexible mmWave-enabled communication devices. The present work aims to overcome challenging problems in the realization of wideband operation, high gain, and excellent isolation in compact MIMO configurations and presents a scalable and fabrication-friendly solution for future wireless networks.
A high isolated, high gain millimeter wave quad-port MIMO antenna array for wideband 5G new radio application.
一种用于宽带 5G 新空口应用的高隔离度、高增益毫米波四端口 MIMO 天线阵列
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作者:Tiwari Poonam, Rai Jayant Kumar, Dwivedi Ajay Kumar, Gahlaut Vishant, Ranjan Pinku, Chowdhury Rakesh, Pandey Ashish
| 期刊: | Scientific Reports | 影响因子: | 3.900 |
| 时间: | 2025 | 起止号: | 2025 Oct 3; 15(1):34484 |
| doi: | 10.1038/s41598-025-18805-1 | ||
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