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Introducing a method for improving the performance of routing algorithms in unmanned aeronautical ad-hoc networks

机译:介绍一种提高无人航空临床网络中路由算法性能的方法

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One of the most widely used applications of wireless networks is in unmanned aeronautical ad-hoc networks. In these networks, the flying nodes in the mission must send their information to the ground base. If a UAV is outside the coverage of the ground base, it loses its connection. The solution is to send the information to the neighboring nodes. These neighboring nodes redirect the information to the ground base. Due to high node dynamics and rapid changes in network topology, one of the biggest concerns in these networks is routing between nodes. Previous routing methods, although making improvement in the overall performance in these networks led to routing overhead and network delay. In the present study a new routing method is introduced. In this new method a routing algorithm is presented with a focus on improving the packet delivery ratio and throughput therefore reducing the end to end delay and network overhead. In the proposed method instead of using only one route between nodes, all discovered routes in the network are kept in the nodes routing table. Then the best route is used as the first proposed route between the source and destination nodes and after failing this route, the second route is utilized immediately. This decreases the broadcasting of route discovery packets through the network. According the simulation results, the proposed method has proved more efficient. There has been an increase in packet delivery ratio by 4% in average, in end to end delay approximately by 30% and in the throughput ratio of the network by 9% in comparison with other methods in different scenarios.
机译:最广泛使用的无线网络应用之一是无人驾驶航空AD-HOC网络。在这些网络中,任务中的飞行节点必须将其信息发送到地基。如果UAV超出了地面底座的覆盖范围,则会失去连接。解决方案是将信息发送到相邻节点。这些相邻节点将信息重定向到地基。由于高节点动态和网络拓扑中的快速变化,这些网络中最大的问题之一是节点之间的路由。以前的路由方法,尽管在这些网络中的整体性能提高导致路由开销和网络延迟。在本研究中,介绍了一种新的路由方法。在这种新方法中,展示了一种路由算法,其专注于提高分组传递比率和吞吐量,从而减少端到端延迟和网络开销。在所提出的方法中,而不是在节点之间仅使用一个路由,网络中的所有发现的路由都保存在节点路由表中。然后,最佳路由用作源和目标节点之间的第一个拟议路由,并且在此路由失败后,第二路径立即使用。这降低了通过网络的路由发现数据包的广播。根据仿真结果,该方法证明了更有效。分组传递比率在4 %平均增加4 %,最终延迟大约延迟约30〜%,与不同方案中的其他方法相比,网络的吞吐率比为9 %。

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