Channel Characterization for 5G-R Indoor Communication at 2.1 GHz

Ting Liu, Danping He, K. Guan, Dongliang Liu, Fusheng Zhu
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引用次数: 2

Abstract

With the development of the smart railway, new services need to be supported by fifth-generation (5G) technology. Comparing to 5G technology, 5G-railway (5G-R) is more suitable for complex scenarios and strict requirements of rail transit, with the potential frequency band of 2.1 GHz. An indoor server room containing servers and train control systems is a common scenario in the railway system, and its channel characteristics are still to be studied. In this paper, radio wave propagation in a server room at 2.1 GHz is predicted using the ray-tracing method, and channel characteristics analysis is conducted through the information acquired from the channel model and rays. Electromagnetic parameters of material are calibrated based on the limited measurement to ensure the validity of the model. Different configurations of the 5G-R indoor scenario simulation can refer to this method, which greatly reduces the equipment, time, and human effort required for measurement.
2.1 GHz 5G-R室内通信信道特性研究
随着智能铁路的发展,新的业务需要第五代(5G)技术的支持。相比5G技术,5G-r更适合轨道交通复杂场景和严格要求,潜在频段为2.1 GHz。包含服务器和列控系统的室内服务器机房是铁路系统中常见的场景,其通道特性仍有待研究。本文采用射线追踪法对某服务器机房2.1 GHz频段的无线电波传播进行了预测,并通过信道模型和射线获取的信息进行了信道特性分析。为了保证模型的有效性,在有限测量的基础上对材料的电磁参数进行了标定。该方法可用于5G-R室内场景模拟的不同配置,大大减少了测量所需的设备、时间和人力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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