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Beamforming Impact on Time Dispersion Assessed on Measured Channels

机译:波束成形对测量信道上的时间色散的影响

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Time dispersion is an important characteristic for radio interface design and parametrization. For example, optimal cyclic prefix length and reference signal density is dependent on delay spread which vary in different environments. A common view is that massive MIMO and beamforming will reduce time dispersion. This paper presents time dispersion results from measurements in different environments and different frequency bands from 5 GHz to 60 GHz. The impact of beamforming on delay spread and OFDM inter-symbol interference is analyzed both with a full scale 5G NR test-bed utilizing analog beamforming as well as channel sounding virtual array data. It is shown that beamforming reduces delay spread and inter-symbol interference in outdoor macro and micro environments. With Gaussian beamforming applied on the channel sounding data the reduction becomes noticeable when the beam width is less than 2 3 times the rms angular spread of the measured channel. With eigen beamforming the reduction is significant except when several paths have equal strength. In indoor environment, the delay spread is already low and the impact from beamforming is very limited.
机译:时间分散是无线电接口设计和参数化的重要特征。例如,最佳循环前缀长度和参考信号密度取决于在不同环境中变化的延迟扩展。普遍的看法是,大规模MIMO和波束成形将减少时间分散。本文介绍了在5 GHz至60 GHz的不同环境和不同频段下进行测量所产生的时间色散结果。在使用模拟波束成形的全尺寸5G NR测试台以及信道探测虚拟阵列数据的基础上,分析了波束成形对延迟扩展和OFDM符号间干扰的影响。结果表明,波束成形可减少室外宏和微环境中的延迟扩展和符号间​​干扰。通过将高斯波束成形应用于通道探测数据,当波束宽度小于所测量通道的均方根角均方根值的2 3倍时,减小变得明显。对于本征波束成形,除非有几条路径具有相同的强度,否则减小幅度很大。在室内环境中,延迟扩展已经很低,并且波束成形的影响非常有限。

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