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Integrating task planning and interactive learning for robots to work in human environments

Alejandro Agostini, Carme Torras

Year
2014
Citations
29

Abstract

Human environments are challenging for robots, which need to be trainable by lay people and learn new behaviours rapidly without disrupting much the ongoing activity. A system that integrates AI techniques for planning and learning is here\nproposed to satisfy these strong demands. The\napproach rapidly learns planning operators from few action experiences using a competitive strategy where many alternatives of cause-effect explanations are evaluated in parallel, and the most successful ones are used to generate the operators. The\nsuccess of a cause-effect explanation is evaluated by a probabilistic estimate that compensates the lack of experience, producing more confident estimations and speeding up the learning in relation to\nother known estimates. The system operates without task interruption by integrating in the planning-learning loop a human teacher that supports the planner in making decisions. All the mechanisms are integrated and synchronized in the robot using a\ngeneral decision-making framework. The feasibility and scalability of the architecture are evaluated in two different robot platforms: a Stäubli arm, and the humanoid ARMAR III.

Keywords

PlannerComputer scienceTask (project management)Humanoid robotRobotHuman–computer interactionArtificial intelligenceProbabilistic logicRelation (database)Scalability

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