Urimubenshi Felix, Konditi Dominic B O, de Dieu Iyakaremye Jean, Moukala Mpele Pierre, Munyaneza Augustin
Department of Electrical and Electronics Engineering, Rwanda Polytechnic, Rwanda.
School of Electrical and Communication Engineering, Technical University of Kenya, Nairobi, Kenya.
Heliyon. 2022 Mar 5;8(3):e09057. doi: 10.1016/j.heliyon.2022.e09057. eCollection 2022 Mar.
In this paper, a novel MIMO antenna operating in the UWB frequency band is presented. The proposed new antenna shape is derived from the conventional circular ring patch antenna having a partial ground plane. An array of three Quad-G Shaped Metamaterial structures was used between the antenna elements of the two-port MIMO antenna to expand the bandwidth in the lower frequency band of UWB application (below 5.567 GHz) and reduce the mutual coupling in such expanded band. The proposed MIMO antenna operates over a bandwidth of 8GHz from 4 GHz to 12 GHz. Over the entire bandwidth, the mutual coupling between antenna elements is less than -19.0 dB with an inter-element separation of mm. The overall optimized dimensions of the proposed antenna are for a free-space wavelength, λ, calculated at 4GHz. The radiation pattern of the proposed MIMO antenna was analyzed using the Combined Results Technique (CRT) integrated into the CST microwave studio. The obtained peak radiation efficiency and gain are 83.0% and 5.57 dB respectively. The MIMO Performance metrics such as envelope correlation coefficient (ECC), diversity gain (DG), channel capacity loss (CCL), Mean Effective Gain (MEG), Total Active reflection Coefficient (TARC), and multiplexing efficiency are evaluated and compared to the standard values. The proposed antenna was compared to other antennas in the literature. It has been found that the key benefit of the present method was observed in achieving the highly miniaturized overall antenna dimension having good MIMO system performance metrics and better radiation characteristics. The proposed antenna was fabricated and measured. The measured and simulated values are found to be in good agreement.
本文提出了一种工作在超宽带频段的新型多输入多输出(MIMO)天线。所提出的新天线形状源自具有部分接地平面的传统圆环贴片天线。在双端口MIMO天线的天线单元之间使用了由三个四边形G形超材料结构组成的阵列,以扩展超宽带应用低频段(低于5.567 GHz)的带宽,并降低该扩展频段内的互耦。所提出的MIMO天线在4 GHz至12 GHz的8 GHz带宽上工作。在整个带宽内,天线单元之间的互耦小于-19.0 dB,单元间距为毫米。所提出天线的整体优化尺寸是针对在4 GHz计算的自由空间波长λ而言的。使用集成在CST微波工作室中的组合结果技术(CRT)分析了所提出MIMO天线的辐射方向图。获得的峰值辐射效率和增益分别为83.0%和5.57 dB。评估了MIMO性能指标,如包络相关系数(ECC)、分集增益(DG)、信道容量损失(CCL)、平均有效增益(MEG)、总有源反射系数(TARC)和复用效率,并与标准值进行了比较。将所提出的天线与文献中的其他天线进行了比较。已经发现,本方法的关键优势在于实现了具有良好MIMO系统性能指标和更好辐射特性的高度小型化的整体天线尺寸。制作并测量了所提出的天线。测量值和模拟值吻合良好。