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Getting it right the first time: Robot mission guarantees in the presence of uncertainty

Damian M. Lyons, Ronald C. Arkin, P. Nirmal, Shu Jiang, T.-M Liu, J. Deeb

Year
2013
Citations
14

Abstract

Certain robot missions need to perform predictably in a physical environment that may only be poorly characterized in advance. We have previously developed an approach to establishing performance guarantees for behavior-based controllers in a process-algebra framework. We extend that work here to include random variables, and we show how our prior results can be used to generate a Dynamic Bayesian Network for the coupled system of program and environment model. Verification is reduced to a filtering problem for this network. Finally, we present validation results that demonstrate the effectiveness of the verification of a multiple waypoint robot mission using this approach.

Keywords

WaypointComputer scienceRobotBayesian networkProcess (computing)Real-time computingArtificial intelligenceWork (physics)Distributed computingEngineering

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