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Robust multirobot coordination in dynamic environments

M. Bernardine Dias, Marc Zinck, Robert Zlot, Anthony Stentz

Year
2004
Citations
117

Abstract

Robustness is crucial for any robot team, especially when operating in dynamic environments. The physicality of robotic systems and their interactions with the environment make them highly prone to malfunctions of many kinds. Three principal categories in the possible space of robot malfunctions are communication failures, partial failure of robot resources necessary for task execution (or partial robot malfunction), and complete robot failure (or robot death). This paper addresses these three categories and explores means by which the TraderBots approach ensures robustness and promotes graceful degradation in team performance when faced with malfunctions.

Keywords

Robustness (evolution)RobotComputer scienceRobot kinematicsFault toleranceDistributed computingTask (project management)Mobile robotControl engineeringArtificial intelligence

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