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首页> 外文期刊>Intelligent Transportation Systems, IEEE Transactions on >BAHG: Back-Bone-Assisted Hop Greedy Routing for VANET's City Environments
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BAHG: Back-Bone-Assisted Hop Greedy Routing for VANET's City Environments

机译:BAHG:针对VANET的城市环境的骨干辅助跃点贪婪路由

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Using advanced wireless local area network technologies, vehicular ad hoc networks (VANETs) have become viable and valuable for their wide variety of novel applications, such as road safety, multimedia content sharing, commerce on wheels, etc. Multihop information dissemination in VANETs is constrained by the high mobility of vehicles and the frequent disconnections. Currently, geographic routing protocols are widely adopted for VANETs as they do not require route construction and route maintenance phases. Again, with connectivity awareness, they perform well in terms of reliable delivery. To obtain destination position, some protocols use flooding, which can be detrimental in city environments. Further, in the case of sparse and void regions, frequent use of the recovery strategy elevates hop count. Some geographic routing protocols adopt the minimum weighted algorithm based on distance or connectivity to select intermediate intersections. However, the shortest path or the path with higher connectivity may include numerous intermediate intersections. As a result, these protocols yield routing paths with higher hop count. In this paper, we propose a hop greedy routing scheme that yields a routing path with the minimum number of intermediate intersection nodes while taking connectivity into consideration. Moreover, we introduce back-bone nodes that play a key role in providing connectivity status around an intersection. Apart from this, by tracking the movement of source as well as destination, the back-bone nodes enable a packet to be forwarded in the changed direction. Simulation results signify the benefits of the proposed routing strategy in terms of high packet delivery ratio and shorter end-to-end delay.
机译:使用先进的无线局域网技术,车载自组织网络(VANET)已因其广泛的新颖应用而变得可行和有价值,例如道路安全,多媒体内容共享,轮毂商业等。VANET中的多跳信息传播受到限制车辆的高机动性和频繁的断线。当前,地理路由协议已广泛用于VANET,因为它们不需要路由构建和路由维护阶段。同样,有了连接意识,它们在可靠的传送方面表现良好。为了获得目的地位置,某些协议使用泛洪,这在城市环境中可能是有害的。此外,在稀疏和空白区域的情况下,频繁使用恢复策略会增加跳数。一些地理路由协议采用基于距离或连通性的最小加权算法来选择中间路口。但是,最短路径或具有较高连通性的路径可能包括许多中间交叉点。结果,这些协议产生具有更高跳数的路由路径。在本文中,我们提出了一种跳贪婪路由方案,该方案在考虑连接性的情况下产生具有最少中间交叉节点数量的路由路径。此外,我们介绍了骨干节点,这些骨干节点在提供十字路口周围的连通性状态中起着关键作用。除此之外,通过跟踪源和目的地的移动,骨干节点使数据包能够沿更改的方向转发。仿真结果表明了所提出的路由策略在高分组传送率和更短的端到端延迟方面的优势。

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