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Properties of Measured Massive MIMO Channels using Different Antenna Geometries

机译:使用不同天线几何形状的实测MIMO信道的特性

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With a significant increase in data throughput, massive MIMO has become an enabling technology for fifth generation (5G) wireless mobile communication systems. Evaluating achievable throughputs in massive MIMO propagation environments using actual channel measurements is an important task. In this paper we characterize three measurement scenarios over four key channel parameters in typical urban environments. We show that different antenna geometries result in different dominating channel properties due to angular resolution and diversity, leading to antenna geometries favoring particular scenarios. A good compromise in antenna geometry is the unconventional "L"-structure for separating channels even in near proximity of the basestation. It is shown that the performance for a practical system in a Rician fading environment can be better approximated with the average K-factor and channel order Np
机译:随着数据吞吐量的显着提高,大规模MIMO已成为第五代(5G)无线移动通信系统的使能技术。使用实际信道测量来评估大规模MIMO传播环境中可实现的吞吐量是一项重要任务。在本文中,我们描述了典型城市环境中四个关键通道参数上的三个测量场景。我们表明,由于角分辨率和分集性,不同的天线几何形状会导致不同的主导信道属性,从而导致天线几何形状偏向特定场景。天线几何形状的一个很好的折衷是非常规的“ L”形结构,即使在基站附近也可以分离信道。结果表明,在Rician衰落环境中,实际系统的性能可以通过平均K因子和信道阶数Np更好地近似。

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