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Analysis of Multi-Hop Probabilistic Forwarding for Vehicular Safety Applications on Highways

机译:公路车辆安全应用的多跳概率转发分析

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Safety applications based on the dedicated short-range communication (DSRC) in vehicular networks have very strict performance requirements for safety messages (in terms of delay and packet delivery). However, there is a lack of systematic approach to achieve the performance requirements by leveraging the potential of multi-hop forwarding. This paper proposes a generic multi-hop probabilistic forwarding scheme that achieves these requirements for event-driven safety messages, is compatible with the 802.11 broadcasting protocol and inherits some of the best features of solutions proposed so far for vehicular safety applications. In addition, we develop a unified and comprehensive analytical model to evaluate the performance of the proposed scheme taking into account the effect of hidden terminals, vehicle densities, and the spatial distribution of the multiple forwarders, in a one-dimensional highway scenario. Our numerical experiments confirm the accuracy of the model and demonstrate that the proposed protocol can improve the packet delivery performance by up to 209 percent, while maintaining the delay well below the required threshold. Finally, the utility of the analytical model is demonstrated via an optimal design for the coefficients of a forwarding probability function in the proposed scheme.
机译:车载网络中基于专用短距离通信(DSRC)的安全应用对安全消息的性能要求非常严格(就延迟和数据包传递而言)。但是,缺乏通过利用多跳转发潜力来达到性能要求的系统方法。本文提出了一种通用的多跳概率转发方案,该方案可以满足事件驱动的安全消息的这些要求,与802.11广播协议兼容,并且继承了迄今为止针对车辆安全应用提出的解决方案的一些最佳功能。此外,我们开发了一个统一而全面的分析模型,以在一维高速公路场景中考虑隐藏终端的影响,车辆密度以及多个货运代理的空间分布,来评估所提出方案的性能。我们的数值实验证实了该模型的准确性,并证明了所提出的协议可以将分组传输性能提高高达209%,同时将延迟保持在所需阈值以下。最后,通过对提出的方案中的转发概率函数的系数进行优化设计,证明了该分析模型的实用性。

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