利用毫米波桥梁改善铁路轨道覆盖:一项测量活动

Adrian Schumacher, N. Jamaly, R. Merz, A. Burg
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引用次数: 1

摘要

将蜂窝容量引入现代火车是一项挑战,因为它们就像法拉第笼一样。在铁路轨道沿线建设射频通道,可确保高信噪比和限制切换。然而,建设这样的射频走廊是困难的,因为获得建设许可的行政负担过重,而且由于基站数量众多,成本高昂。我们在本文中的贡献是在高功率宏基站之间的现有桅杆上以短间隔部署毫米波前置低功率带外中继器节点的非常规解决方案。本文通过在一条商业铁路线上的广泛测量活动,论证了这一概念的可行性。讨论了与仅使用高增益宏天线的基线相比,使用许多低功耗节点的低增益天线的好处,并评估了覆盖改进。根据测量结果,标定了一个简单的路径损耗模型。该模型允许评估毫米波中继器架构的潜力,以增加宏小区站点间距离并降低部署成本。
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Improving railway track coverage with mmWave bridges: A Measurement Campaign
Bringing cellular capacity into modern trains is challenging because they act as Faraday cages. Building a radio frequency (RF) corridor along the railway tracks ensures a high signal-to-noise ratio and limits handovers. However, building such RF corridors is difficult because of the administrative burden of excessive formalities to obtain construction permissions and costly because of the sheer number of base stations. Our contribution in this paper is an unconventional solution of mmWave fronthauled low-power out-of-band repeater nodes deployed in short intervals on existing masts between high-power macro cell sites. The paper demonstrates the feasibility of the concept with an extensive measurement campaign on a commercial railway line. The benefit of using many low-power nodes with low-gain antennas compared to a baseline with only high-gain macro antennas is discussed, and the coverage improvement is evaluated. Based on the measurement results, a simple path loss model is calibrated. This model allows evaluation of the potential of the mmWave repeater architecture to increase the macro cell inter-site distance and reduce deployment costs.
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Proceedings of the 1st Workshop on 5G Measurements, Modeling, and Use Cases Experimentation and 5G KPI measurements in the 5GENESIS platforms Case for 5G-aware video streaming applications Learning from large-scale commercial networks: challenges and knowledge extraction towards machine learning use cases Improving railway track coverage with mmWave bridges: A Measurement Campaign
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