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Applying Message Forwarding and Replication to Multi-UAV Message Ferry Networks

机译:将消息转发和复制应用于多UAV消息轮渡网络

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This paper presents a sparse ad hoc network where multiple mobility controlled message ferries cooperate to deliver messages for stationary and disconnected wireless nodes. Unmanned Aerial Vehicles (UAVs) are utilized as message ferries with an on-the-fly mobility decision making. The multi-hop delivery of messages is enabled by efficient message forwarding and replication among UAVs to accelerate the delivery of messages. Due to lack of global knowledge in UAVs, decisions in a UAV are made based on local observations. To this end, a signaling among UAVs occurs when they visit each other on-the-air. Through signaling, a UAV updates its view from the network and applies this information to its decision makers. Trajectory aware and priority based message replication schemes are proposed in this paper to limit the number of message replications and to decrease the delay of message delivery. The results show that the multi-hop delivery of messages in a message ferry network by message forwarding and replication among UAVs accelerates the delivery of messages comparing with a pure message ferrying scheme without any message forwarding. The proposed trajectory aware message replication scheme performs as good as the unlimited message replication scheme while decreasing the buffer length in UAVs. Moreover, the priority based message replication scheme in UAVs speeds up the delivery of high priority messages without any adverse impact on low priority messages.
机译:本文提出了一个稀疏的ad hoc网络,其中多个移动性受控制的消息渡轮协作为固定和断开连接的无线节点传递消息。无人飞行器(UAV)用作消息渡轮,具有动态机动性决策功能。消息的多跳传递通过UAV之间的有效消息转发和复制来实现,以加速消息的传递。由于在无人机方面缺乏全球知识,因此无人机的决策是基于当地的观察。为此,当UAV空中访问时,它们之间会发生信号传递。通过发出信号,无人机可以从网络更新其视图并将此信息应用于其决策者。本文提出了基于轨迹感知和基于优先级的消息复制方案,以限制消息复制的数量并减少消息传递的延迟。结果表明,与无消息转发的纯消息传递方案相比,通过消息转发和UAV之间的复制在消息传递网络中进行多跳消息传递可以加快消息传递。所提出的轨迹感知消息复制方案的性能与无限消息复制方案一样好,同时减少了无人机的缓冲区长度。此外,UAV中基于优先级的消息复制方案可加快高优先级消息的传递,而不会对低优先级消息产生任何不利影响。

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