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Narrow Beam Channel Characteristics Measured on an 5G NR Grid-of-Beam Test-Bed

机译:在5G NR闪光槽试验床上测量的窄光束通道特性

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Massive MIMO enabling dynamic beamforming is one key component in 5G New Radio (NR). Narrow beams improve capacity by reduced interference and extend coverage by increased antenna gain. One implementation of dynamic beamforming is Grid-of-Beams (GoB) with fixed narrow beams. In this study, the per beam characteristics are measured in a full-scale micro cell deployment with a mm-wave 5G NR test-bed. It is shown that the channel characteristics are strongly dependent on reflections captured within each beam. Channel conditions such as delay spread, singular value ratio and MIMO rank differ also between adjacent beams. Reflections may even cause significant path length difference which may call for individual synchronization per beam, e.g. meaning that beams at same transmission point may not always be considered quasi co-located (QCL).
机译:大规模MIMO启用动态波束成形是5G新型无线电(NR)中的一个关键组件。窄光束通过减少干扰而通过增加的天线增益来提高容量。动态波束成形的一个实现是具有固定窄波束的横梁栅格(GOB)。在本研究中,以MM波5G NR试验床的全尺寸微电池部署测量每个光束特性。结果表明,信道特性强烈依赖于在每个光束内捕获的反射。诸如延迟扩散,奇异值比和MIMO等级的信道条件也不同于相邻光束之间。反射甚至可能造成显着的路径长度差,这可以呼叫每个波束的单独同步,例如,意思是,相同传输点处的光束可以不总是被认为是准共同(QCL)。

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