VANETs中智能驱水方案参数的优化设置

Luca Anchora, Luca Casone, Giovanni Ciccarese, M. De Blasi, P. Marra, Cosimo Palazzo
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引用次数: 3

摘要

为了优化车载自组织网络中的消息传播,最近提出了许多智能泛洪方案。在本文中,我们重点研究了一种利用基于分布式计时器的竞争机制的方案,该方案只允许竞争获胜者转发消息,并抑制其他潜在的转发者。特别是,在沿着消息传播方向的每一跳,潜在的转发器在重广播数据包之前等待的时间与它们与发送方的距离成反比;如果一个潜在的转发器在等待时间内拦截了另一个节点重新广播的数据包,则该转发器将被抑制。就消息传递比率、延迟和信道利用率而言,该方案的性能取决于最大等待时间(MaxWT)和发送方与潜在转发器之间允许的最大距离R。本研究工作旨在评估这些参数的最佳设置。我们表明,虽然MaxWT和R的值使性能最大化随交通负载和车辆密度而变化,但动态算法并不必要。然后,我们报告如何设置参数的值,以实现在我们所考虑的场景中可接受的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An optimal setting for the parameters of an Intelligent Flooding Scheme in VANETs
A number of Intelligent Flooding Schemes have been recently proposed in order to optimize message dissemination in Vehicular Ad Hoc Networks. In this paper we focus on a scheme which exploits a distributed timer-based contention mechanism for allowing only contention winners to forward the message and to suppress other potential forwarders. In particular, at each hop along the message propagation direction, potential forwarders wait for a time which is inversely proportional to their distance from the sender before rebroadcasting the packet; a potential forwarder is suppressed if it intercepts the packet rebroadcasted by another node during the waiting time. Performance of the scheme, in terms of message delivery ratio, delay and channel utilization, depends on the maximum waiting time (MaxWT) and on the maximum distance R allowed between the sender and a potential forwarder. This research work aims at evaluating an optimal setting of these parameters. We show that, although the values of MaxWT and R which maximize performance vary with traffic load and vehicle density, a dynamic algorithm is not essential. Then, we report how to set the values of the parameters to achieve a performance that is acceptable in the scenarios which we have considered.
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