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Performance Evaluation of AODV and AOMDV with Probabilistic Relay in VANET Environments

机译:Vaceboric中继在VANET环境中的ADV和AOMDV的性能评估

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Vehicular ad hoc networks (VANETs) are the specific class of Mobile ad hoc networks (MANETs). Since vehicles tend to move in a high speed, the network topology is rapidly changed. Thus vehicle's connectivity problem is one of the interesting issues in VANETs. Ad hoc on-demand multipath distance vector (AOMDV) is the extended version of ad hoc on-demand distance vector (AODV). AOMDV is designed to overcome a connectivity problem due to highly dynamic network topology. It provides multipath for data packets delivery from the source to the destination. Although AOMDV outperforms AODV in packet delivery ratio, AOMDV's multipath establishment and maintenance generate more control packets than AODV's unipath. However increasing the vehicle speed will degrade their performance. Thus in this paper, we added probabilistic relay, which enables adjacent vehicles to probabilistically relay unsuccessful data packet transmission, into IEEE 802.11 as a MAC standard model and combined AODV with probabilistic relay (AODV-PR) and AOMDV with probabilistic relay (AOMDV-PR). Based on our simulation result, the addition of probabilistic relay clearly helps those protocols to improve their performances especially in packet delivery ratio even under a high speed. Moreover, probabilistic relay adds beacons, but no additional routing overhead. Probabilistic relay, clearly solved connectivity problem in highly dynamic topology of VANETs. We evaluate those protocol performances based on packet delivery ratio, routing overhead, and average delivery delay under variation of vehicle speed.
机译:车辆临时网络(VANET)是移动临时网络(MANET)的具体类别。由于车辆倾向于高速移动,因此网络拓扑快速变化。因此,车辆的连接问题是VANET中的一个有趣问题之一。 Ad Hoc按需多路径距离矢量(AOMDV)是Ad Hoc按需距离矢量(AODV)的扩展版本。 AOMDV旨在由于高度动态的网络拓扑而克服连接问题。它为从源传递到目标的数据包提供多路径。虽然AomDV以分组传递比率优于AODV,但AOMDV的多径建立和维护比AODV的uniPath产生更多的控制数据包。然而,增加车速会降低它们的性能。因此,在本文中,我们添加了概率中继,其使得相邻车辆能够成为概率地中继的数据分组传输,作为MAC标准模型,以及具有概率中继(AOMDV-PR的AODV-PR)和AOMDV的AODV组合AODV(AOMDV-PR )。基于我们的仿真结果,概率中继的添加清楚地帮助那些协议,即使在高速下也可以提高它们的性能。此外,概率继电器添加信标,但没有额外的路由开销。概率继电器,在高动态拓扑结构中明确解决了连接问题。我们根据车速变化,基于分组传递比,路由开销和平均输送延迟来评估这些协议性能。

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