车辆安全应用中年龄与信息可及性的MAC权衡

Xu Wang, R. Berry
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引用次数: 5

摘要

车联网提供了极大提高交通安全的希望,但对信息时代和信息可达性有严格的要求,后者指的是信息传播的范围。我们考虑了一维车辆网络的理想模型,并表明这两个指标之间存在一个基本的权衡:通过降低信息的可及性可以获得更小的年龄。我们将其应用于两种当前技术:蜂窝V2X (C-V2X)和专用短距离通信(DSRC),并推导出表征这两种技术的这两个指标之间权衡的方程。在指数路径损失和可忽略噪声的情况下,这种关系成为一个固定不变的比率。考虑到这种关系,在高拥塞情况下,这两种协议以不同的方式权衡这些度量。C-V2X倾向于实现更小的年龄,而DSRC倾向于保持更大的可达性。该理想模型还用于分析SAE标准J2945/1中速率控制和功率控制机制的稳态。我们表明,年龄和可达性的比例仍然受到相同的权衡曲线的支配:速率控制试图保持较大的可达性,而功率控制有助于提高年龄。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
MAC Trade-offs Between Age and Reachability of Information in Vehicular Safety Applications
Vehicular networking offers the promise of greatly improving transportation safety but has stringent requirements on information age as well as information reachability, where the later refers to the range over which information is propagated. We consider an idealized model of a one-dimensional vehicular networks and show that there is a basic trade-off between these two metrics: a smaller age can be obtained by reducing the reachability of information. We apply this to two current technologies: Cellular V2X (C-V2X) and Dedicated Short Range Communication (DSRC) and derive an equation that characterizes the trade-off between these two metrics for both technologies. In the case of exponential path loss and negligible noise, this relationship becomes a fixed invariant ratio. Given this relationship, under high congestion, these two protocols tradeoff these metrics differently. C-V2X tends to achieve a smaller age while DSRC tends to maintain a larger reachability. The idealized model is also applied to analyze the steady state of rate control and power control mechanisms such as those in the SAE standard J2945/1. We show that the ratio of age and reachability is still governed by the same trade-off curve: rate control tries to maintain a large reachability, while power control helps improve the age.
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