Si Liming, Jiang Haixin, Lv Xin, Ding Jun
Opt Express. 2019 Feb 4;27(3):3472-3482. doi: 10.1364/OE.27.003472.
A metamaterial structure, which has positive and negative permeability over a wide microwave frequency band, has a proposed structure that can be employed as a superstrate for reducing the mutual coupling of a MIMO antenna system. This MIMO antenna system consists of two extremely close-spaced antenna elements. The proposed structure's decoupling mechanism is verified by both the full-wave electromagnetic simulations and experiments, and the simulated and measured results agree very well with each other. The two-element MIMO antenna system, when loaded with the metamaterial-inspired superstrate, shows a high isolation (S<-15 dB) within a broad matching band of 22.3% from 4.2 to 5.25 GHz covering the 5G frequency band of 4.8-5 GHz with an extremely close edge-to-edge space of just 1 mm (corresponding to 0.017λ at 4.9 GHz). The MIMO antenna system's measured largest isolation with the metamaterial-inspired superstrate is 29 dB. This isolation is characterized by a maximum improvement of 23 dB, compared to the original case. Furthermore, after loading the superstrate, the measured gain is enhanced by more than 0.5 dB in the whole matching band as well, with a 3.2 dB maximum gain improvement.
一种超材料结构,在很宽的微波频段内具有正负磁导率,其提出的结构可作为一种上层结构,用于降低多输入多输出(MIMO)天线系统的互耦。该MIMO天线系统由两个间距极小的天线单元组成。通过全波电磁仿真和实验验证了所提出结构的去耦机制,仿真结果与测量结果吻合得非常好。当加载受超材料启发的上层结构时,两单元MIMO天线系统在4.2至5.25 GHz的22.3%宽匹配频段内表现出高隔离度(S<-15 dB),覆盖4.8 - 5 GHz的5G频段,边缘到边缘的间距仅为1 mm(在4.9 GHz时对应0.017λ)。带有受超材料启发的上层结构的MIMO天线系统测量得到的最大隔离度为29 dB。与原始情况相比,这种隔离度最大提高了23 dB。此外,加载上层结构后,在整个匹配频段内测量得到的增益也提高了超过0.5 dB,最大增益提高了3.2 dB。