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Modeling Probabilistic Flooding in VANETs for Optimal Rebroadcast Probabilities

机译:VANET中的概率泛滥,以实现最优rebrocebast概率

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Probabilistic flooding is commonly considered in vehicular ad-hoc networks (VANETs) to alleviate the celebrated broadcast storm problem. Heuristics and simulations have so far proved to be an efficient way with which to design probabilistic information dissemination solutions with demonstrated effectiveness. Supplementing with mathematical analysis for both design and evaluation is expected to generalize the results, and increase the confidence in the proposed solutions. So far, this has been limited due to the difficulties associated with the underlying stochastic dependencies. In this paper, we introduce simple models of single and multiple lane roads to design effective probabilistic flooding schemes for VANETs. The proposed analytical framework offers a novel and generic tool which can cover any number of lanes, vehicle transmission range, and density. We derive difference equations whose solutions yield the probability of all vehicles receiving the emergency warning message as a function of the rebroadcast probability, the number of neighbors of each vehicle, and the dissemination distance. The models are validated using simulations, realistically representing both the traffic and networking aspects, and are used as a baseline to design two schemes for information dissemination which employ probabilistic flooding. The one attempts direct calculation of the required parameters whereas the other adaptively regulates the rebroadcast probability based on the vehicle speed. The schemes are evaluated using simulations and are found to achieve significant performance improvements compared to blind flooding with respect to the achieved reachability, end-to-end delay, and number of rebroadcasts, comparable to the performance achieved by optimal flooding, obtained via brute force.
机译:概率洪水通常考虑在车辆临时网络(VANET)中以缓解庆祝的广播风暴问题。迄今为止,启发式和模拟已被证明是一种有效的方式,以便设计具有证明有效性的概率信息传播解决方案。补充设计和评估的数学分析预计将概括结果,并提高对提出的解决方案的信心。到目前为止,由于与潜在的随机依赖性相关的困难,这受到限制。在本文中,我们介绍了单一和多车道道路的简单型号,为VANET设计有效的概率洪水方案。建议的分析框架提供了一种新颖和通用工具,可以覆盖任何数量的车道,车辆传输范围和密度。我们提供差异方程,其解决方案产生的所有车辆的概率都是接收紧急警告消息的函数,作为再广播概率的函数,每个车辆的邻居的数量以及传播距离。使用模拟验证模型,实际代表流量和网络方面,并用作基线来设计采用概率洪水的信息传播的两种方案。尝试直接计算所需的参数,而另一个则基于车速自适应地调节reBBroadcast概率。通过模拟评估该方案,并发现与盲目的洪水相对于实现的可达性,端到端延迟和refbroadcast的数量相比,与通过蛮力获得的性能相当的盲目的洪水相比,与盲目的洪水相当相当,可以获得显着的性能改进。 。

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