一种新型天线结构的实验评价:多面板大规模MIMO

Zheng Jiang, Peng Chen, Fengyi Yang, Q. Bi
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引用次数: 3

摘要

随着无线通信的发展,下一代(5G)蜂窝系统应运而生,其目标是提供比LTE-Advanced系统高3倍的频谱效率,用于增强移动宽带。大规模MIMO被认为是实现这一目标最重要的技术之一,理论分析和现场试验证明了它的优越性。然而,天线的尺寸和重量已经成为现实网络中部署的瓶颈。为了解决这一问题,在3GPP NR (New Radio)中提出了一种新型的大规模MIMO柔性天线结构——多面板大规模MIMO,引起了广泛的关注。目前文献对多面板大规模MIMO的性能进行了数值模拟研究,但对多面板大规模MIMO的实际性能进行现场测量的研究较少。在本文中,我们首先详细介绍了我们开发的多面板大规模MIMO原型,然后提供了我们的辐射方向图测量结果和现场测试结果。这些实验测量结果不仅证明了覆盖波束形成模式的有效性,而且证明了多面板大规模MIMO可以获得显著的全增益。基于这些测量结果,可以看出,多面板大规模MIMO将成为下一代蜂窝系统中大规模MIMO灵活部署的新型实用天线阵列结构。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental Evaluation of A Novel Antenna Structure:Multi-Panel Massive MIMO
With evolution of wireless communication, the next generation (5G) cellular system emerged and aimed at providing three times higher spectrum efficiency compared with LTE-Advanced system for enhanced Mobile Broadband. Massive MIMO is considered as one of the most important technologies to achieve the purpose and its benefits have been proved by theoretical analysis and field trials. However, the antenna size and weight have become the bottlenecks on the deployment in the realistic network. To tackle this problem, a novel flexible antenna structure for massive MIMO, known as multi-panel massive MIMO, was proposed and attracted broad attention in 3GPP NR (New Radio). Currently the performance of the multi-panel massive MIMO is studied in literature by the numerical simulation, however the field measurements to characterize the actual performance of multi-panel massive MIMO have been scarce so far. In this article, we first present a detailed description of our developed multi-panel massive MIMO prototype and then provide our radiation pattern measurement results and field test results. These experimental measurement results not only justify the validity of the coverage beamforming pattern, but also demonstrate that the multi-panel massive MIMO can achieve significant throughout gain. Based on these measurement results, it can be seen that multi-panel massive MIMO will be a novel practical antenna array structure for massive MIMO flexible deployment in the next generation cellular systems.
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