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Incremental Learning of Spatial-Temporal Features in Human Motion Patterns with Mixture Model for Planning Motion of a Collaborative Robot in Assembly Lines

Akira Kanazawa, Jun Kinugawa, Kazuhiro Kosuge

Year
2019
Citations
8

Abstract

Collaborative robots are expected to work in cooperation with humans to improve productivity and maintain the quality of products. In the previous study, we have proposed an incremental learning system for adaptively scheduling a motion of the collaborative robot based on a worker's behavior. Although this system could model the worker's motion pattern precisely and robustly without collecting the worker's data in advance, it required two different models for modeling the worker's spatial and temporal features respectively and was not well considered for generalization. In this paper, we extend the previous incremental learning system by integrating the spatial and temporal models using a mixture model. In addition, we install a new incremental learning algorithm which improves a generalization capability of the mixture model and avoids overfitting in the situation where the prior information is limited. Implementing the proposed algorithm, we evaluate the effectiveness of the proposed system by experiments for several workers and for several assembly processes.

Keywords

OverfittingComputer scienceArtificial intelligenceGeneralizationRobotMotion (physics)Machine learningScheduling (production processes)Data modelingMotion planning

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