An Age-Of-Information Perspective on Decentralized Congestion Control in Vehicular Networks

Ion Turcanu, A. Baiocchi, Nikita Lyamin, A. Vinel
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引用次数: 3

Abstract

Vehicular networking enables a wide range of emerging Cooperative Intelligent Transportation System (C-ITS) applications, from safety to traffic efficiency and infotainment. Many of these applications depend on the reliability and timeliness of status information periodically exchanged among vehicles on the same wireless communication channel. A major effort has been spent, especially by standardization bodies, to define congestion control algorithms for the vehicular networking environment. The picture is, however, more complex than simply controlling the load level on the channel, given the non-trivial interplay of delivery reliability, system throughput, and timeliness of updates. In this paper, we provide a comprehensive performance evaluation of the main state-of-the-art broadcast rate control algorithms from the point of view of channel load, utilization efficiency, and information freshness. We evaluate these algorithms in a realistic simulation environment and describe a centralized approach to define a bound on the performance. We show that controlling the congestion based on either channel load or information freshness only leads to sub-optimal performance.
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基于信息时代视角的车辆网络分散拥塞控制
车载网络实现了广泛的新兴合作智能交通系统(C-ITS)应用,从安全到交通效率和信息娱乐。这些应用程序中的许多依赖于车辆之间在同一无线通信信道上定期交换状态信息的可靠性和及时性。标准化机构已经花费了大量的精力来定义车辆网络环境的拥塞控制算法。然而,考虑到交付可靠性、系统吞吐量和更新及时性的重要相互作用,情况比简单地控制通道上的负载级别要复杂得多。在本文中,我们从频道负载、利用效率和信息新鲜度的角度对主要的最先进的广播速率控制算法进行了全面的性能评估。我们在真实的模拟环境中评估了这些算法,并描述了一种集中的方法来定义性能的界限。我们表明,基于信道负载或信息新鲜度控制拥塞只会导致次优性能。
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