15 GHz频段多点传输5G试验系统覆盖评估

K. Hiltunen, A. Simonsson, Peter Ökvist, B. Halvarsson
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引用次数: 4

摘要

本文借助驱动测试测量,对运行在15ghz频段的5G试验系统的下行覆盖进行了评估。关键的5G特性,如波束成形、波束跟踪和多点传输在测量过程中得到了利用。结果表明,多点传输明显改善了下行覆盖。由于利用多个传输点提供了宏观分集,接收信号强度得到了提高。此外,分布式MIMO,即用户设备(UE)同时接收来自多个传输点的独立数据流的可能性,导致平均秩值的大幅提高。对于传输点之间的位置尤其如此,在这些位置上,终端具有通往服务节点的足够好的链路。最后,由于改进的信号强度和更高的秩值,平均下行链路吞吐量提高了33-46%(整个区域)或39-42%(繁忙广场)。总而言之,试验系统能够保持非常高的下行链路吞吐量,从4到13 Gbps不等,在繁忙的广场内移动的终端,这证明了不同波束和传输点之间无缝移动的好处。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
5G trial system coverage evaluation utilizing multi-point transmission in 15 GHz frequency band
The downlink coverage of a 5G trial system operating within the 15 GHz frequency band is evaluated in this paper with the help of drive test measurements. Key 5G features, such as beamforming, beam tracking and multi-point transmission have been utilized during the measurements. The results indicate that multi-point transmission provides a clear improvement to the downlink coverage. Received signal strength is improved due to the macro diversity offered by the utilization of multiple transmission points. Furthermore, distributed MIMO, i.e. the possibility for the user equipment (UE) to simultaneously receive independent data streams from multiple transmission points, results in large improvements in the average rank values. This is the case in particular for the locations in between the transmission points, where the UE has sufficiently good links towards the serving nodes. Finally, as a result of both the improved signal strength and higher rank values, the average downlink throughput is improved by 33–46% (whole area) or 39–42% (busy square). All in all, the trial system is able to maintain a very high downlink throughput, varying from 4 to 13 Gbps, towards a UE moving within the busy square, which demonstrates the benefit of seamless mobility between the different beams and transmission points.
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