论文标题

联合框架设计和资源分配,用于超级可靠和低延迟的车辆网络

Joint Frame Design and Resource Allocation for Ultra-Reliable and Low-Latency Vehicular Networks

论文作者

Yang, Haojun, Zhang, Kuan, Zheng, Kan, Qian, Yi

论文摘要

第五代移动通信系统的快速发展加速了车辆到所有通信的实施。与其他类型的车辆通信相比,车辆到车辆(V2V)的通信主要集中在与邻近车辆驾驶安全信息的交换,这需要超可靠和低延迟通信(URLLCS)。但是,由于严格的延迟要求,V2V URLLC中的帧大小明显缩短,因此,从大小的角度来看,与有效载荷信息相比,开销不再可以忽略不计。在本文中,我们研究了Urban V2V URLLC系统的框架设计和资源分配,其中上行链接蜂窝资源在底层模式下重复使用。具体而言,我们首先根据常规的试点方案和叠加的试点方案分析V2V对和蜂窝用户的性能下限。然后,我们提出了一种框架设计算法和半持久的调度算法,以实现具有合理复杂性的最佳框架设计和资源分配。最后,我们的仿真结果表明,所提出的框架设计和资源分配方案可以极大地满足V2V对的URLLC要求,并保证蜂窝用户的通信质量。

The rapid development of the fifth generation mobile communication systems accelerates the implementation of vehicle-to-everything communications. Compared with the other types of vehicular communications, vehicle-to-vehicle (V2V) communications mainly focus on the exchange of driving safety information with neighboring vehicles, which requires ultra-reliable and low-latency communications (URLLCs). However, the frame size is significantly shortened in V2V URLLCs because of the rigorous latency requirements, and thus the overhead is no longer negligible compared with the payload information from the perspective of size. In this paper, we investigate the frame design and resource allocation for an urban V2V URLLC system in which the uplink cellular resources are reused at the underlay mode. Specifically, we first analyze the lower bounds of performance for V2V pairs and cellular users based on the regular pilot scheme and superimposed pilot scheme. Then, we propose a frame design algorithm and a semi-persistent scheduling algorithm to achieve the optimal frame design and resource allocation with the reasonable complexity. Finally, our simulation results show that the proposed frame design and resource allocation scheme can greatly satisfy the URLLC requirements of V2V pairs and guarantee the communication quality of cellular users.

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