Full duplex-aided Sensing and Scheduling in Cellular-V2X Mode 4

C. Campolo, A. Molinaro, Francesco Romeo, A. Bazzi, A. Berthet
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引用次数: 18

Abstract

The cellular Vehicle-to-Everything (C-V2X) radio access technology, specified by the Third Generation Partnership Project (3GPP), enables direct communications between vehicles, using the sidelink radio resources over the PC5 interface. In C-V2X Mode 4, a vehicle autonomously selects the resources and keeps them for consecutive transmissions before a resource reselection is triggered, according to a sensing-based semi-persistent scheduling mechanism. A wrong estimation of the resource occupancy status may lead to persistent packet losses, due to collisions with simultaneous transmissions from other vehicles. In this paper, we propose to provide vehicles with on-board full-duplex transceivers and harness this capability (i) to make the sensing phase more accurate, (ii) to make a more informed resource reselection decision, and (iii) to enhance packet decoding while transmitting. Achieved simulation results show that the proposal provides several improvements in terms of packet transmission reliability and timeliness when compared against the legacy C-V2X Mode 4.
基于蜂窝v2x模式的全双工辅助传感与调度
由第三代合作伙伴计划(3GPP)指定的蜂窝车对一切(C-V2X)无线接入技术,通过PC5接口使用副链路无线电资源,实现车辆之间的直接通信。在C-V2X模式4中,车辆根据基于感知的半持久调度机制,在触发资源重选之前,自主选择资源并将其保存为连续传输。对资源占用状态的错误估计可能会导致持续的数据包丢失,因为与其他车辆同时传输的数据发生碰撞。在本文中,我们建议为车辆提供车载全双工收发器,并利用这种能力(i)使传感相位更准确,(ii)做出更明智的资源重选决策,以及(iii)增强传输时的数据包解码。仿真结果表明,与传统的C-V2X模式4相比,该方案在分组传输可靠性和时效性方面有了一些改进。
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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