基于蜂窝v2x副链路模式的最大复用距离调度

Giammarco Cecchini, A. Bazzi, Michele Menarini, B. Masini, A. Zanella
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引用次数: 11

摘要

车联网(V2X)通信将成为提高道路安全的关键技术。特别是,协同感知服务将通过定期传播携带移动信息的信标信息,使车辆能够感知周围环境。这样的应用需要一种能够提供高可靠性和低延迟的无线技术。在这种情况下,基于长期演进(LTE)版本14的蜂窝v2x是一个很有前途的候选者。针对LTE侧链路模式3,将保留给直连链路的资源由网络进行管理,提出了一种基于对网络侧车辆位置的不同精度知识的资源调度算法。通过在真实的高速公路和城市场景中进行的模拟,我们将所提出的解决方案与基于重用距离概念的基准算法进行了比较,并证明了新解决方案除了在数据包接收比和延迟方面始终提供最高性能外,不需要对任何参数进行微调。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Maximum Reuse Distance Scheduling for Cellular-V2X Sidelink Mode 3
Vehicle-to-everything (V2X) communication will be the key technology to improve safety on the road. In particular, the cooperative awareness service will give vehicles the capacity of being aware of the neighborhood through the periodic dissemination of beacon messages, carrying mobility information. Applications like these need a wireless technology able to provide high reliability and low latency. In this context, Cellular-V2X based on long term evolution (LTE) Release 14 is a promising candidate. Objective of this work is to focus on LTE Sidelink mode 3, where resources reserved to direct links are managed by the network and to propose a resource scheduling algorithm based on the knowledge, with different levels of accuracy, of the positions of the vehicles at the network side. Through simulations, carried out in realistic highway and urban scenarios, we compare the proposed solution with a benchmark algorithm based on the concept of reuse distance and we demonstrate that the new solution, other than always offering the highest performance in terms of packet reception ratio and latency, does not require the fine tuning of any parameter.
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