Radio Access for Future 5G Vehicular Networks

B. Masini, A. Bazzi, E. Natalizio
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引用次数: 23

Abstract

Current wireless access technologies cannot satisfy all the requirements of future vehicular networks, and 5G could provide a solution to the actual limitations enabling super-fast, reliable, and low latency connections. The road to 5G vehicular networks can be considered opened by the Release 14 of Long Term Evolution (LTE), which enables vehicle-to-vehicle (V2V) communications also out of coverage of the eNodeB. This work firstly focuses on radio access of actual and next generation vehicular networks, by highlighting the main limitations and potentialities. Then, it focuses on beaconing for cooperative awareness and compares the performance of LTE when adopted in different fashions, from the actual legacy solution in vehicle-to-infrastructure (V2I) mode to future potential alternatives, such as LTE-V2V, LTE-V2V with short subframe and LTE-V2V with full duplex (FD) radios. Performance results are provided in terms of medium access efficiency and success probability of resource allocation, and show the potential advantages of future solutions, especially those provided by LTE-V2V with FD radios.
未来5G车载网络的无线接入
目前的无线接入技术无法满足未来车联网的所有需求,5G可以解决实际限制,实现超高速、可靠、低延迟的连接。5G车辆网络的道路可以被视为长期演进(LTE)的第14版打开,它使车辆对车辆(V2V)通信也不在eNodeB的覆盖范围内。这项工作首先侧重于实际和下一代车载网络的无线接入,突出了主要的局限性和潜力。然后,重点介绍了协作感知的信标,并比较了采用不同方式时LTE的性能,从车辆到基础设施(V2I)模式的实际遗留解决方案到未来潜在的替代方案,如LTE- v2v、LTE- v2v短子帧和LTE- v2v全双工(FD)无线电。从介质接入效率和资源分配成功率两方面给出了性能结果,并展示了未来解决方案的潜在优势,特别是LTE-V2V与FD无线电提供的解决方案。
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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