Performance Analysis of Large Aperture mMIMO UCCA Arrays in a 5G User Dense Network

Md Imrul Hasan, SK Nayemuzzaman, M. Saquib
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Abstract

The fifth generation (5G) wireless network signals suffer from significant path loss due to the use of higher frequencies in Sub-6 GHz and millimeter-wave (mmWave) bands. Inter-user interference in an ultra-dense network offers additional challenges to provide a high data rate. Therefore, it is desirable to generate narrow beams to extend the coverage of a 5G network by increasing antenna gain, and improve its capacity/data rate by reducing inter-user interference. Unlike the conventional massive multiple-input multiple-output (mMIMO) rectangular planar antenna array, an mMIMO uniform concentric circular antenna (UCCA) array with a larger inter-ring spacing (i.e., inter-ring spacing> ⋋/2) is capable of generating a significantly narrow beam with a moderate side-lobe level while utilizing the same number of antennas. This fact leads us to investigate the use of large aperture mMIMO UCCA arrays in a 5G user-dense network in order to improve its performance.
5G用户密集网络下大孔径mimo UCCA阵列性能分析
由于在Sub-6 GHz和毫米波(mmWave)频段中使用更高的频率,第五代(5G)无线网络信号会遭受严重的路径损耗。超密集网络中的用户间干扰为提供高数据速率提供了额外的挑战。因此,希望通过增加天线增益来产生窄波束以扩大5G网络的覆盖范围,并通过减少用户间干扰来提高其容量/数据速率。与传统的大规模多输入多输出(mMIMO)矩形平面天线阵列不同,具有较大环间距(即环间距> /2)的mMIMO均匀同心圆形天线(UCCA)阵列能够在使用相同数量的天线的情况下产生具有中等旁瓣电平的显着窄波束。这一事实促使我们研究在5G用户密集网络中使用大孔径mimo UCCA阵列,以提高其性能。
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