使用Vanet路由的地理路由协议

B N Mohan Kumar
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摘要

以前,车辆自组织网络(vanet)是通过使用几种地理路由方案来设计的。这并不支持现有地理路由方法中的任何路由配置。车载自组织网络是由移动节点组成的网络,因此建立和保持端到端链路是非常苛刻的。本研究工作的主要目的是广泛的车际距离,高车速也支持车辆密度的改变。通过车与车之间的互联,以高可靠性获取车辆的准确实时位置信息。由于频繁的链路捕获和快速的拓扑变化,为vanet增加组织良好的路由规则是不容易的。在现有的路线网络中,要找到搅拌车辆的准确位置是非常困难的,并且可能会产生麻烦。此外,其他车辆可以访问的搅拌车辆的位置信息通常是滞后的,因为它总是随着时间的推移而搅拌。幸运的是,我们仔细检查了车辆的临时即将到来的位置可以预测。基于重要的监控,我们提出了一种新的地理路由方法。它使用外推的汽车位置。锚定在车辆位置上的礼仪也被称为地理路由协议(GR),由于它们在动态环境变化和汽车的高上限机动性方面的稳定性,被发现是最适合vanet的。该礼仪与多跳信息传递虚拟化协议相结合,该协议工作在传输层的顶部,使多跳信息广播一个接一个地飙升。我们设计了实用的计算机模拟来展示礼仪的背诵优势相对于其他方法在不可区分的时间,活力效率将得到提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Geographic Routing Protocol Using Vanet Routing
Previously, vehicular ad hoc networks (VANETs) were designed by using several geographic routing schemes. That doesn’t sustaining any routing configurations in the existing geographic routing methods. Vehicular Ad hoc Network is networks which consist of mobile nodes, consequently it is very harsh to make and remain up end-to-end links. The main aim of this research work is widespread inter vehicle distance, high speed of vehicles also support the density of vehicle is altered. The exact real time location information of vehicles is accessed with high reliability via vehicle to vehicle inter connection. Due to frequent link entrapped and rapid topology changes it is not easy to augment well-organized routing etiquettes for VANETs. To find the exact location of stirring vehicles is very difficult and may incur in the existing routing networks. Additionally the position information about stirring vehicle accessible to other vehicles is usually time-lagged as it is always stirring over time. Luckily, we scrutinize that the interim upcoming locations of vehicles can be forecast. Anchored in the significant surveillance, we propose a novel approach for geographic routing. It uses the extrapolative locations of automobiles. The etiquettes anchored in the vehicles' positions also called as geographic routing protocols (GR) were uncovered to be the most adequate to the VANETs because of their sturdiness in making with the dynamic environment changes and the high-ceilinged mobility of the automobiles. The etiquette is incorporated with a multi-hop information delivery virtualization deal that works on the crest of the transportation stratum and gives soaring speed for multi-hop one after the other information broadcasts. We demeanor practical computer imitations to display the recital advantage of the etiquette over additional approaches at the indistinguishable time vigor efficiency will be enhanced.
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