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Fault-tolerant communication topology management based on minimum cost arborescence for leader-follower UAV formation under communication faults

机译:在通信故障下,基于最小成本凝视的最小成本凝固性容错通信拓扑管理

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摘要

A novel fault-tolerant communication topology management method for the leader-follower unmanned aerial vehicle (UAV) formation is proposed to minimize the formation communication cost while keeping the formation shape, even in the case of communication faults during the formation flight. This method is based on Edmonds' algorithm for the minimum cost arborescence problem in graph theory. When a formation shape is given before the formation flight, this method can get the optimal initial communication topology with the minimum formation communication cost for keeping the formation shape. When some communication faults occur during the formation flight, which will cause the formation shape cannot be kept, this method can reconfigure the communication topology in time to guarantee the safety of all UAVs and recover the formation shape, and then it can reoptimize the communication topology by UAV position reconfiguration in the formation shape to minimize the formation communication cost for continuously keeping the formation shape. The effectiveness of this method is demonstrated through several simulation experiments.
机译:提出了一种新的容错通信拓扑管理方法,用于领导者无人驾驶飞行器(UAV)形成,以最小化形成形状的形成通信成本,即使在地层飞行期间的通信故障的情况下也是如此。该方法基于eDMonds的算法,用于图表理论中的最小成本凝固问题。当在形成飞行之前给出形成形状时,该方法可以通过最小的形成通信成本来获得最佳初始通信拓扑,以保持形成形状。当在形成飞行期间发生某些通信故障时,这将导致形成形状不能保存,这种方法可以及时重新配置通信拓扑以保证所有无人机的安全性并恢复形成形状,然后它可以重新提升通信拓扑通过UAV位置在形成形状中重新配置,以最小化连续保持形成形状的形成通信成本。通过若干模拟实验证明了该方法的有效性。

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