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一种用于实现宽频 Sub-6GHz 通信系统中 MIMO 阵列中天线元件密集排布的自解耦技术。

A Self-Decoupling Technique to Realize Dense Packing of Antenna Elements in MIMO Arrays for Wideband Sub-6 GHz Communication Systems.

机构信息

Department of Electrical and Computer Engineering, COMSATS University Islamabad, Abbottabad Campus, Abbottabad 22060, Pakistan.

Department of Computer Systems Engineering, Faculty of Electrical and Computer Engineering, University of Engineering and Technology Peshawar, Peshawar 25120, Pakistan.

出版信息

Sensors (Basel). 2023 Jan 6;23(2):654. doi: 10.3390/s23020654.

Abstract

A self-decoupled technique is described that enables the radiating elements in the antenna array to be densely packed for multiple-input multiple-output (MIMO) wireless communications systems. High isolation between the adjacent antenna elements is obtained by fixing the radiating elements in an orthogonal configuration with respects to each other. Current from the adjacent ports cancels their impact which results in low mutual coupling. The additional benefit of this configuration is realizing a densely packed array. The ground plane of each radiating element on the array board itself are isolated to mitigate surface wave propagations to suppress mutual coupling between the antenna elements. The radiating elements are based on a modified edge-fed circular patch antenna that includes a curved slot line and open-circuited stub to widen the array’s impedance bandwidth with no impact on the antenna’s footprint size. The proposed technique was verified with the design of an antenna array of matrix size 4 × 4 centered at 3.5 GHz. The array had a measured impedance bandwidth of 4 GHz from 1.5 GHz to 5.5 GHz, which corresponds to a fractional bandwidth of 114%, peak gain of 3 dBi and radiation efficiency of 84%. Its average diversity gain and envelope correlation coefficient (ECC) over its operating band are 9.6 dB and <0.016, respectively. The minimum isolation achieved between the radiating elements is better than 15 dB. The dimensions of the array are 0.4 × 0.4 × 0.039λ_g^3. The proposed array has characteristics suitable for sub-6 GHz wireless communication systems

摘要

描述了一种自去耦技术,该技术可使天线阵列中的辐射元件为多输入多输出(MIMO)无线通信系统密集排布。通过将辐射元件彼此固定成正交配置,可以获得相邻天线元件之间的高隔离度。相邻端口的电流相互抵消,从而导致低互耦。这种配置的额外好处是实现了密集排布的阵列。通过将阵列板上每个辐射元件的接地平面彼此隔离,可以减轻表面波传播,从而抑制天线元件之间的互耦。辐射元件基于一种改进的边缘馈电圆形贴片天线,该天线包括曲线缝隙线和开路短截线,可在不影响天线占地面积的情况下拓宽阵列的阻抗带宽。该技术通过设计一个中心频率为 3.5GHz 的 4×4 矩阵大小的天线阵列进行了验证。该阵列的阻抗带宽在 1.5GHz 至 5.5GHz 范围内为 4GHz,对应于分数带宽为 114%,峰值增益为 3dBi,辐射效率为 84%。在其工作频带内,其平均分集增益和包络相关系数(ECC)分别为 9.6dB 和<0.016。辐射元件之间实现的最小隔离度优于 15dB。该阵列的尺寸为 0.4×0.4×0.039λ_g^3。所提出的阵列具有适合 sub-6GHz 无线通信系统的特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2d02/9862120/5196e59aff92/sensors-23-00654-g001.jpg

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