Complex System Modeling and Simulation · 2021 · 38 citations · 23 references
EngineeringUnderwater SystemField RoboticsAuv ModelUnmanned Ground VehicleSystems EngineeringUnderwater CommunicationFormation FlyingUnderwater RoboticsMulti-auv FormationsAutonomous Underwater VehiclesMulti-auv FormationUnderwater RobotUnderwater VehicleAerospace EngineeringSingle AuvUnderwater TechnologyRoboticsSwarm Robotics
Because of their wide detection range and rich functions, autonomous underwater vehicles (AUVs) are widely used for observing the marine environment, for exploring natural resources, for security and defense purposes, and in many other fields of interest. Compared with a single AUV, a multi-AUV formation can better perform various tasks and adapt to complex underwater environments. With changes in the mission or environment, a change in the UAV formation may also be required. In the last decade, much progress has been made in the transformation of multi-AUV formations. In this paper, we aim to analyze the core concepts of multi-AUV formation transformation; summarize the effects of the AUV model, underwater environment, and communication between AUVs within formations on formation transformation; and elaborate on basic theories and implementation approaches for multi-AUV formation transformation. Moreover, this overview includes a bibliometric analysis of the related literature from multiple perspectives. Finally, some challenging issues and future research directions for multi-AUV formation transformation are highlighted.
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A survey of multi-agent formation control
Kwang‐Kyo Oh, Myoung‐Chul Park, Hyo‐Sung Ahn · Automatica · 2014 · 2.4K citations
Multi-agent Formation Control, Engineering, Distributed Robotics +4
Resilience of the Internet to Random Breakdowns
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Ali Dorri, Salil S. Kanhere, Raja Jurdak · IEEE Access · 2018 · 882 citations · Full text
Artificial Intelligence, Agent Development Tool, Engineering +14