Inam Ullah, M. Asghar, Lina Bariah, S. Muhaidat, Jyri Hämäläinen
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引用次数: 3
摘要
介绍了5G新无线电(NR)网络中中继选择方案的性能。5G新空口预计将实现可靠的车辆网络,重点是车辆到一切(V2X)通信。这里需要5G NR来支持C-Plane通过无线Uu接口进行的V2X Side Link (SL)通信,这自然会受到衰落和路径损耗的影响。因此,中继可以通过在5G NR网络中部署低功率中继节点(RN)来解决这一问题。介绍了四种不同中继选择方案和不同中继密度/部署场景下双跳中继的端到端(e2e)性能。这些选择方案包括传输中涉及的两条链路的平均和/或瞬时无线信道条件的组合,即无线回程中继链路(RL)和接入链路(AL)。仿真结果表明,根据端到端瞬时链路条件进行中继选择时,可以获得端到端平均数据速率方面的最佳性能。此外,网络中更高的RN密度会产生更高的性能,因为有更多的路径可供选择,特别是当RN随机部署而不是固定位置时。
Performance Evaluation of Relaying with Different Relay Selection Schemes in 5G NR V2X Communications
This paper presents the performance of relay selection schemes in 5G New Radio (NR) network. The 5G NR is anticipated to enable reliable vehicular networking, with emphasis on Vehicle-to-Everything (V2X) communications. Here, 5G NR is required to support V2X Side Link (SL) communications for C-Plane signaling via wireless Uu interface, which naturally suffers from fading and path loss. Therefore, relaying can address this concern by deploying a low power relay node (RN) in 5G NR network. This paper presents the end-to-end (e2e) performance of dual-hop relaying under four different relay selection schemes and different RN density/deployment scenarios. These selection schemes comprised of the combinations of average and/or instantaneous wireless channel conditions of the two links involved in the transmission, wireless backhaul relay link (RL) and access link (AL). Simulation results demonstrate that when relay selection is performed relying on the instantaneous e2e link conditions, the best performance in terms of average e2e data rate can be obtained. Moreover, higher RN density in network, yields enhanced performance, due to the availability of additional paths to select from, especially, when RNs are randomly deployed rather than at fixed locations.