Contextual task-aware shared autonomy for assistive mobile robot teleoperation
For robot applications in unknown or even hazardous environments, such as search and rescue, it is difficult and stressful for human beings to merely simply teleoperate a mobile robot without its assistance. Consequently, means to facilitate an efficient shared autonomy between human and robot are t...
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Published in | Proceedings of the ... IEEE/RSJ International Conference on Intelligent Robots and Systems pp. 3311 - 3318 |
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Main Authors | , , , |
Format | Conference Proceeding |
Language | English |
Published |
IEEE
01.09.2014
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Subjects | |
Online Access | Get full text |
ISSN | 2153-0858 |
DOI | 10.1109/IROS.2014.6943023 |
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Abstract | For robot applications in unknown or even hazardous environments, such as search and rescue, it is difficult and stressful for human beings to merely simply teleoperate a mobile robot without its assistance. Consequently, means to facilitate an efficient shared autonomy between human and robot are the subject of much research work in the field of robotics. This paper proposes a novel shared autonomy system, which recognizes the user intention by estimating the task the user is executing based on the context information, and provides motion assistance according to the inferences. To incorporate the uncertainty of contextual task recognition, a Gaussian Mixture Regression model combined with a recursive Bayesian filter is adopted, which is adaptive to the implicit user model for task execution during operation. The proposed method is applied to the problem of controlling a flying robot in the context of two task types: doorway crossing and object inspection. Its benefits are demonstrated by the simulation results. |
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AbstractList | For robot applications in unknown or even hazardous environments, such as search and rescue, it is difficult and stressful for human beings to merely simply teleoperate a mobile robot without its assistance. Consequently, means to facilitate an efficient shared autonomy between human and robot are the subject of much research work in the field of robotics. This paper proposes a novel shared autonomy system, which recognizes the user intention by estimating the task the user is executing based on the context information, and provides motion assistance according to the inferences. To incorporate the uncertainty of contextual task recognition, a Gaussian Mixture Regression model combined with a recursive Bayesian filter is adopted, which is adaptive to the implicit user model for task execution during operation. The proposed method is applied to the problem of controlling a flying robot in the context of two task types: doorway crossing and object inspection. Its benefits are demonstrated by the simulation results. |
Author | Ming Gao Zollner, J. Marius Oberlander, Jan Schamm, Thomas |
Author_xml | – sequence: 1 surname: Ming Gao fullname: Ming Gao email: gao@fzi.de organization: Group of Technisch Kognitive Assistenzsysteme, FZI Forschungszentrum Inf., Karlsruhe, Germany – sequence: 2 givenname: Jan surname: Oberlander fullname: Oberlander, Jan email: oberlaender@fzi.de organization: Group of Interaktive Diagnose-und Servicesysteme, FZI Forschungszentrum Inf., Karlsruhe, Germany – sequence: 3 givenname: Thomas surname: Schamm fullname: Schamm, Thomas organization: Group of Technisch Kognitive Assistenzsysteme, FZI Forschungszentrum Inf., Karlsruhe, Germany – sequence: 4 givenname: J. Marius surname: Zollner fullname: Zollner, J. Marius organization: Group of Technisch Kognitive Assistenzsysteme, FZI Forschungszentrum Inf., Karlsruhe, Germany |
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Snippet | For robot applications in unknown or even hazardous environments, such as search and rescue, it is difficult and stressful for human beings to merely simply... |
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SubjectTerms | Context Context modeling Inspection Mobile robots Robot kinematics Robot sensing systems |
Title | Contextual task-aware shared autonomy for assistive mobile robot teleoperation |
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