Cellular Vehicle-to-Everything (C-V2X) is a frontier in the evolution of distributed communication introduced in 3GPP release 14 to advanced use cases. While research efforts continue to optimize the accessible bandwidth for transportation ecosystem, a bottom up analysis from the application layer perspective is necessary prior to deployment, as it can expose potential issues that can emerge in a dynamic road environment. This emphasizes on assessing the network using application-oriented metrics to evaluate its capacity of providing advanced vehicular services with stringent latency and throughput requirements. C-V2X enables advanced applications like autonomous driving and on-the-go transaction services where consecutive exchange of messages is required. For such services, the network level metrics fails to capture the edge case service quality as they express an average measure of performance. In this paper, we present an application-oriented analysis of a transaction service built on C-V2X protocol. We analyze different design choices that affects quality of service both from network-oriented and user-centric metrics and we highlight the issues regarding packet dissemination from infrastructures for vehicle-to-infrastructure (V2I) based service applications. We also present our study on the impact of batching in disseminating acknowledgement packets (ACK) and its consequence on both the service reliability and network congestion. Our results show that time-sensitive and mission-sensitive vehicular applications should aim for a balance between achieving the mission utility in shortest duration possible, while keeping minimal impact on the system-wide stability.
翻译:在3GPP 14号发布到高级使用案例中引入了分布式通信(C-V2X),这是在3GPP 14号发布到高级使用案例中引入的分布式通信演进的前沿。虽然研究工作继续优化运输生态系统无障碍带宽,但在部署之前需要从应用层角度进行自下而上的分析,因为从应用层角度分析可能暴露在动态道路环境中出现的潜在问题。这强调利用面向应用的衡量标准对网络进行评估,以评价其提供具有严格惯性要求和吞吐量要求的先进车辆服务的能力。C-V2X 使自动驾驶和在线交易服务等先进应用软件得以使用。C-V2X 使得需要连续交换信息。对于这类服务,网络级别指标无法反映优势案件服务质量的质量,因为它们反映了平均绩效。在本文中,我们对C-V2X 协议基础上建立的交易服务服务进行面向应用的应用进行了面向应用;我们分析了影响服务质量的不同设计选择,从网络导向和以用户为中心的计量,我们着重指出了从车辆对基础设施进行包式传播的问题。我们还要持续使用服务应用的系统对了解的准确性影响,同时,我们还要研究在保证整个任务应用中,我们应反映对保证系统对准确性结果的影响。</s>