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A Reliability-Aware Adaptive Greedy-Multicast Routing Protocol for 3D Highly Dynamic Networks

机译:一种面向3D高动态网络的可靠性感知自适应贪婪组播路由协议

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Three-dimensional (3D) highly dynamic unmanned aerial vehicle networks (UAVNets) could serve as a pivotal intermediate architecture in air and space integration networks. For UAVNets, efficient routing protocols for data packet delivery are crucial to its wide use. However, communication in UAVs has been a challenging project because of frequent failures at forwarding nodes. In this paper, we propose a localized heuristic solution, called the reliability-aware adaptive greedy-multicast routing (RAGM-3D), to reduce the negative impact of failure on route forwarding. RAGM-3D dynamically adjusts the next-hop forwarding node set which, initially selected by a new multi-factor hybrid greedy strategy, are based on the reliability evaluation to route packets to the destination efficiently. Simulation results show that comprehensive performance of RAGM-3D in terms of packet delivery ratio, delay, and routing overhead outperforms other compared protocols.
机译:三维(3D)高动态无人飞行器网络(UAVNets)可以用作航空航天集成网络中的关键中间体系结构。对于UAVNet,用于数据包传送的有效路由协议对其广泛使用至关重要。但是,由于转发节点频繁发生故障,无人机中的通信已成为一项具有挑战性的项目。在本文中,我们提出了一种本地化启发式解决方案,称为可靠性感知的自适应贪婪多播路由(RAGM-3D),以减少故障对路由转发的负面影响。 RAGM-3D动态调整下一跳转发节点集,该节点集最初是由新的多因素混合贪婪策略选择的,其基础是可靠性评估,可以有效地将数据包路由到目的地。仿真结果表明,RAGM-3D在数据包传递率,延迟和路由开销方面的综合性能优于其他比较协议。

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