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Rank-aware Tree-based Geographical Routing for tactical mobile Ad-hoc networks

机译:基于秩的基于树的基于树的地理路由,用于战术移动ad-hoc网络

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Tactical mobile ad hoc networks have a hierarchical organization with soldiers reporting to their group leader and from them to the command center. In such a network, it is important to prioritize the traffic associated with the leaders without starving other essential communication in the network. To support such a feature, we propose a hybrid routing protocol, named as “Rank-aware Tree-based Geographical Routing (RTGR),” that comprises of rank-aware tree and geographical routing techniques. The rank-aware tree routing is designed to support high priority traffics between ordinary nodes and their group leaders by utilizing the shortest-path algorithm with a consideration of the chain of command, while the rank-aware geographical routing is designed to support relatively lower priority traffics and hence intends to avoid any unnecessary resource competition with the higher ones. This approach favors priority traffic for providing needful resource for achieving better reliability with lower overhead in the network. The performance evaluation is conducted using the OPNET simulator, showing significant improvement in packet delivery ratio, end-to-end delay and reliability.
机译:战术移动临时网络拥有一个分层组织,其中士兵向他们的小组领导者报告并将其从其到指挥中心。在这样的网络中,重要的是要优先考虑与领导者相关的流量而不饿死网络中的其他必要通信。要支持此类功能,我们提出了一个混合路由协议,名为“基于秩的基于树的地理路由(RTGR),”这包括秩感树和地理路由技术。 Quide-Areve Tree路由旨在通过利用Clip链接的最短路径算法来支持普通节点及其组领导者之间的高优先级流量,而秩认识的地理路由旨在支持相对较低的优先级随之而来,有意避免与较高的任何不必要的资源竞争。这种方法利用优先级流量来提供需要在网络中实现更好的可靠性来实现更好的可靠性。性能评估使用OPNET模拟器进行,显示分组传递比率,端到端延迟和可靠性的显着提高。

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