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GeoDTN+Nav: Geographic DTN Routing with Navigator Prediction for Urban Vehicular Environments

机译:GeoDTN + Nav:具有城市车辆环境的导航器预测功能的地理DTN路由

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Position-based routing has proven to be well suited for highly dynamic environment such as Vehicular Ad Hoc Networks (VANET) due to its simplicity. Greedy Perimeter Stateless Routing (GPSR) and Greedy Perimeter Coordinator Routing (GPCR) both use greedy algorithms to forward packets by selecting relays with the best progress towards the destination or use a recovery mode in case such solutions fail. These protocols could forward packets efficiently given that the underlying network is fully connected. However, the dynamic nature of vehicular network, such as vehicle density, traffic pattern, and radio obstacles could create unconnected networks partitions. To thisrnend, we propose GeoDTN+Nav, a hybrid geographic routing solution enhancing the standard greedy and recovery modes exploiting the vehicular mobility and onboard vehicular navigation systems to efficiently deliver packets even in partitioned networks. GeoDTN+Nav outperforms standard geographic routing protocols such as GPSR and GPCR because it is able to estimate network partitions and then improves partitions reachability by using a store-carry-forward procedure when necessary. We propose a virtual navigation interface (VNI) to provide generalized route information to optimize such forwarding procedure. We finally evaluate the benefit of our approach first analytically and then with simulations. By using delay tolerant forwarding in sparse networks, GeoDTN+Nav greatly increases the packet delivery ratio of geographic routing protocols and provides comparable routing delay to benchmark DTN algorithms.
机译:基于位置的路由由于其简单性,已被证明非常适合于高度动态的环境,例如车载自组织网络(VANET)。贪婪外围无状态路由(GPSR)和贪婪外围协调器路由(GPCR)都使用贪婪算法通过选择向目的地进展最快的中继来转发数据包,或者在此类解决方案失败的情况下使用恢复模式。如果基础网络已完全连接,则这些协议可以有效转发数据包。但是,车辆网络的动态性质,例如车辆密度,交通模式和无线电障碍,可能会造成未连接的网络分区。为此,我们提出了GeoDTN + Nav,这是一种混合地理路由解决方案,可利用车辆移动性和车载导航系统增强标准贪婪和恢复模式,从而即使在分区网络中也能有效传送数据包。 GeoDTN + Nav优于标准的地理路由协议,例如GPSR和GPCR,因为它能够估计网络分区,然后在必要时通过使用存储转发过程来提高分区的可达性。我们提出了一个虚拟导航界面(VNI),以提供广义的路线信息来优化此类转发过程。最后,我们首先通过分析然后通过仿真评估我们方法的好处。通过在稀疏网络中使用延迟容忍转发,GeoDTN + Nav大大提高了地理路由协议的数据包传输率,并提供了与基准DTN算法相当的路由延迟。

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