Persistent Scheduling with Broadcast Feedback for Cellular V2X Communication

Youngjoon Yoon, Junwon Kang, Hyogon Kim
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引用次数: 2

Abstract

In New Radio (NR) Sidelink Mode 2 for vehicle-to-everything (V2X) communication, each vehicle autonomously selects the wireless resource through sensing-based resource selection and reservation. Since perfect sensing and coordination in distributed scheduling is impossible, resource collisions in the resource reservation are unavoidable. NR V2X copes with the problem by frequently changing resources, which also helps resolve the resource collisions with the vehicles that newly come into the mutual communication range. However, the random and frequent hopping between resources can itself cause resource collisions, which eventually leads to performance degradation by reducing the effectiveness of sensing. In this paper, we explore an alternative approach that does not require such frequent resource switching. We use a persistent scheduling where the selected resource is not changed unless there is an actual resource collision. To cope with the coincidental resource collisions, however, we supplement it with a broadcast feedback scheme. We show that the proposed scheduling approach leads to better performance than the standard semi-persistent scheduling scheme in terms of packet reception ratio (PRR), number of persistent collisions, and the length of consecutive collision events. The performance edge is maintained even with vehicle population churn.
基于广播反馈的蜂窝V2X通信持续调度
在车辆对一切(V2X)通信的新无线电(NR)旁链模式2中,每辆车通过基于感知的资源选择和预留,自主选择无线资源。由于分布式调度中不可能有完美的感知和协调,资源预留中的资源冲突是不可避免的。NR V2X通过频繁更换资源来解决这一问题,也有助于解决与新进入相互通信范围的车辆发生资源冲突的问题。然而,资源之间的随机和频繁的跳变本身会引起资源冲突,从而降低感知的有效性,最终导致性能下降。在本文中,我们探索了一种不需要频繁资源切换的替代方法。我们使用持久调度,除非发生实际的资源冲突,否则不会更改所选资源。然而,为了应对巧合的资源冲突,我们补充了一个广播反馈方案。我们证明了所提出的调度方法在分组接收比(PRR)、持久冲突的数量和连续冲突事件的长度方面比标准的半持久调度方案具有更好的性能。即使车辆数量不断变化,性能优势仍然保持不变。
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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