Qureshi Usman, Khan Muhammad Umar, Sharawi Mohammad S, Burokur Shah Nawaz, Mittra Raj
Research Institute for Microwave and Millimeter-Wave Studies, National University of Sciences and Technology, Islamabad 44000, Pakistan.
Department of Electrical Engineering, Polytechnique Montréal, Montréal, QC H3T 1J4, Canada.
Sensors (Basel). 2021 Nov 15;21(22):7577. doi: 10.3390/s21227577.
This work presents a new technique for enhancing the performance of a multiple-input multiple-output (MIMO) antenna by improving its correlation coefficient . A broadband dielectric structure is designed using the transformation electromagnetics (TE) concept to decorrelate the fields of closely placed radiating elements of an MIMO antenna, thereby decreasing and mutual coupling. The desired properties of the broadband dielectric wave tilting structure (DWTS) are determined by using quasi-conformal transformation electromagnetics (QCTE). Next, the permittivity profile of the DWTS is realized by employing air-hole technology, which is based on the effective medium theory, and the DWTS is fabricated using the additive manufacturing (3D printing) technique. The effectiveness of the proposed technique is verified by designing two-element patch-based MIMO antenna prototypes operating at 3 GHz, 5 GHz, and 7 GHz, respectively. The proposed technique helped to reduce the correlation coefficient in the range of 37% to 99% in the respective operating bandwidth of each MIMO antenna, thereby, in each case, improving the isolation between antenna elements by better than 3 dB, which is an excellent performance.
这项工作提出了一种通过改善相关系数来提高多输入多输出(MIMO)天线性能的新技术。利用变换电磁学(TE)概念设计了一种宽带介质结构,以使MIMO天线中紧密放置的辐射单元的场去相关,从而降低耦合系数和互耦。通过使用准共形变换电磁学(QCTE)来确定宽带介质波倾斜结构(DWTS)的所需特性。接下来,基于有效介质理论采用气孔技术实现DWTS的介电常数分布,并使用增材制造(3D打印)技术制造DWTS。通过分别设计工作在3GHz、5GHz和7GHz的基于双单元贴片的MIMO天线原型,验证了所提技术的有效性。所提技术有助于在每个MIMO天线的各自工作带宽内将相关系数降低37%至99%,从而在每种情况下将天线单元之间的隔离度提高超过3dB,这是非常出色的性能。