Department of Information and Communication Engineering, Chungbuk National University, Cheongju, South Korea.
Department of Intelligent Mechatronics Engineering, Sejong University, Seoul, South Korea.
PLoS One. 2024 Jul 26;19(7):e0306446. doi: 10.1371/journal.pone.0306446. eCollection 2024.
This paper presents the design and isolation enhancement of a filtering MIMO antenna with a radiation null for out-of-band suppressions suited for 5G sub-6 GHz communications. The MIMO antenna offers -10 dB impedance bandwidth functionality at the most prominent partial spectrum of the 5G NR n78 band for enabling wireless applications in base stations, ranging from 3.4 GHz to 3.61 GHz. To mitigate the redundancy of an RF filter and to achieve a strong filtering response, a radiation null is produced in the gain with four identical rectangular slots, which results in a significant gain drop of more than 8 dBi at the stopband. The geometrical design also allows 30 percent size reduction of single element. Subsequently, a closely spaced (0.11λ0) two-port MIMO antenna is implemented and with the utilization of the proposed rectangular shaped hollow stub parasitic element, the interelement isolation is significantly improved by more than 8 dB over the operational frequency range while retaining the filtering without any additional RF structure. The design simplification, peak gain of 5.4 dBi, near ideal response of diversity gain, ECC less than 0.03, congruency between simulated and measured results, and stable parameters make it a valuable choice for 3.5 GHz sub-6 GHz communications.
本文提出了一种滤波 MIMO 天线的设计和隔离增强,该天线具有辐射零点,可用于抑制带外抑制,适用于 5G 低于 6GHz 的通信。该 MIMO 天线在 5G NR n78 频段的最突出部分频谱上提供了-10dB 的阻抗带宽功能,可在基站中实现从 3.4GHz 到 3.61GHz 的无线应用。为了减轻射频滤波器的冗余并实现强滤波响应,通过四个相同的矩形缝隙产生了增益中的辐射零点,这导致在阻带处增益下降超过 8dBi。该几何设计还允许单个元件的尺寸缩小 30%。随后,实现了一个紧密间隔(0.11λ0)的双端口 MIMO 天线,并利用所提出的矩形空心短截线寄生元件,在工作频率范围内,元件间隔离度显著提高了 8dB 以上,同时在不增加任何额外射频结构的情况下保持滤波性能。该设计简化、峰值增益为 5.4dBi、分集增益具有理想的响应、ECC 小于 0.03、仿真和测量结果之间的一致性以及稳定的参数使其成为 3.5GHz 低于 6GHz 通信的理想选择。