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Biologically inspired kinematic synergies enable linear balance control of a humanoid robot
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Abstract
- Despite many efforts, balance control of humanoid robots in the presence of unforeseen external or internal forces has remained an unsolved problem. The difficulty of this problem is a consequence of the high dimensionality of the action space of a humanoid robot, due to its large number of degrees of freedom (joints), and of non-linearities in its kinematic chains. Biped biological organisms face similar difficulties, but have nevertheless solved this problem. Experimental data reveal that many biological organisms reduce the high dimensionality of their action space by generating movements through linear superposition of a rather small number of stereotypical combinations of simultaneous movements of many joints, to which we refer as kinematic synergies in this paper. We show that by constructing two suitable non-linear kinematic synergies for the lower part of the body of a humanoid robot, balance control can in fact be reduced to a linear control problem, at least in the case of relatively slow movements. We demonstrate for a variety of tasks that the humanoid robot HOAP-2 acquires through this approach the capability to balance dynamically against unforeseen disturbances that may arise from external forces or from manipulating unknown loads.
- Subjects :
- 0209 industrial biotechnology
Engineering
General Computer Science
10009 Department of Informatics
Kinematic synergies
Movements
02 engineering and technology
Kinematics
Humanoid robot
Degrees of freedom (mechanics)
000 Computer science, knowledge & systems
03 medical and health sciences
020901 industrial engineering & automation
0302 clinical medicine
Postural Balance
Humans
1700 General Computer Science
Adaptation
Muscle Synergies
Balance (metaphysics)
business.industry
Biologically inspired
Control engineering
Robotics
Motion primitives
Biomechanical Phenomena
Action (philosophy)
Face (geometry)
1305 Biotechnology
Balance control
Artificial intelligence
business
030217 neurology & neurosurgery
Computer Science(all)
Biotechnology
Subjects
Details
- Database :
- OpenAIRE
- Accession number :
- edsair.doi.dedup.....4f8c3e58657427d9cb0300e66b91e279