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Heterogeneous LTE/DSRC Approach to Support Real-time Vehicular Communications

机译:支持实时车载通信的异构LTE / DSRC方法

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Vehicle-to-everything (V2X) communications have become a key enabler for future autonomous driving by providing sensing and cooperation abilities beyond traditional on-board sensors. The main candidate technologies for V2X communications are dedicated short range communication (DSRC)/IEEE 802.11p and long-term evolution (LTE), each of which has its own strengths and weaknesses. DSRC provides low-latency direct connectivity, but suffers from serious link degradation and reliability issues. On the other hand, LTE is able to provide high capacity data transmission, while its latency remains an issue due to the long transmission time interval. Integrating these two radio technologies as a heterogeneous solution is promising to complement each other and support V2X applications with differentiated service requirements. This paper proposes a service-aware radio access technology (RAT) selection algorithm that enables a heterogeneous LTE/DSRC solution, where LTE and/or DSRC are selected according to services. Each vehicle is assumed to be equipped with both LTE and DSRC interfaces. The heterogeneous solution selects RAT based on the services requirements with consideration of the networks performance. The solution is implemented with integration of the C-ITS standard and validated through the OMNet++ and SUMO based network simulator. A see-through scenario, where a fleet of vehicles require real-time video data sharing to assist efficient driving, is considered. The simulation results demonstrate that the proposed approach outperforms the purely DSRC approach significantly and is able to simultaneously support safety message transmission with low latency, video streaming with high bandwidth requirements, and other applications with different service requirements.
机译:车辆到一切(V2X)通信已通过提供超越传统车载传感器的传感和协作功能,成为未来自动驾驶的关键推动力。 V2X通信的主要候选技术是专用的短距离通信(DSRC)/ IEEE 802.11p和长期演进(LTE),每种技术都有其优点和缺点。 DSRC提供了低延迟的直接连接,但存在严重的链路降级和可靠性问题。另一方面,LTE能够提供高容量的数据传输,而由于较长的传输时间间隔,其延迟仍然是一个问题。将这两种无线电技术集成为一个异构解决方案有望相互补充,并支持具有不同服务需求的V2X应用程序。本文提出了一种支持服务的无线电接入技术(RAT)选择算法,该算法支持异构LTE / DSRC解决方案,其中根据服务选择LTE和/或DSRC。假定每辆车都配备了LTE和DSRC接口。异构解决方案在考虑网络性能的基础上根据服务需求选择RAT。该解决方案通过集成C-ITS标准实施,并通过OMNet ++和基于SUMO的网络模拟器进行了验证。考虑了一种透明场景,其中车队需要实时视频数据共享以辅助高效驾驶。仿真结果表明,所提出的方法明显优于单纯的DSRC方法,并且能够同时支持具有低延迟的安全消息传输,具有高带宽要求的视频流以及具有不同服务要求的其他应用程序。

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