A load-balanced and mobility-aware routing protocol for vehicular ad-hoc networks

Tien Dung Nguyen, Tien Pham Van, Tuan Do Trong, T. Nguyen, Huong Nguyen Thi, Hang Nguyen Thi
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引用次数: 10

Abstract

VANET (Vehicular Ad-hoc NETwork) is comprised of devices that are installed inside vehicles and on road sides. Since vehicles can move randomly and at various velocities, the network topology is highly dynamic. Consequently, links between network nodes could be broken at anytime and communications from vehicle to vehicle could be corrupted. For this reason, a routing protocol independent of the network topology should be considered. Moreover, it should take into account throughput at intermediate nodes to avoid overloading. In this study, we introduce a new load-balanced routing protocol in which the well-known location-aware GPSR [1] (Greedy Perimeter Stateless Routing) is redesigned to accommodate dynamics of vehicles. In the proposed protocol (called load-balanced GPSR), traffic traversing nodes are reported to the route calculation process that also requests for update of node position regularly. Specifically, the load-balanced protocol not only considers the movement of network nodes, but also analyzes packet queues of neighbor nodes while selecting the best route to forward data.
车辆自组织网络的负载平衡和移动感知路由协议
VANET(车辆自组织网络)由安装在车内和路边的设备组成。由于车辆可以以不同的速度随机移动,因此网络拓扑结构是高度动态的。因此,网络节点之间的链接随时可能被中断,车辆之间的通信可能被破坏。因此,应该考虑独立于网络拓扑的路由协议。此外,它应该考虑中间节点的吞吐量,以避免过载。在本研究中,我们引入了一种新的负载均衡路由协议,其中重新设计了众所周知的位置感知GPSR[1](贪婪周边无状态路由)以适应车辆的动态。在该协议(称为负载均衡GPSR)中,将流量遍历节点报告给路由计算过程,并定期请求更新节点位置。具体来说,负载均衡协议不仅要考虑网络节点的移动,还要分析邻居节点的数据包队列,选择最佳路由转发数据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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