OTHER
Development of the upper body of a humanoid robot using parallel linkage mechanisms
Xiuming Wu, Tomohiro Kobayashi, Akira Nakamura, Kenichiro Yasui, Hideo Furuhashi
- Year
- 2014
- Citations
- 3
Abstract
In this study, we have performed simulations to study actuator forces and stroke lengths, which are required to perform selected movements of the upper body of a humanoid robot. Results from the simulations are used to compare the performance of four types of parallel linkage mechanisms: 6-DOF 6-UCU, 5-DOF redundant 6-UCU-SS, 3-DOF redundant 6-UCU-SR, and 3-DOF redundant 6-UCU-UR hybrid parallel linkage mechanisms. The comparisons show that the use of redundant mechanisms provides better performance in changing the upper body positions and orientations.
Keywords
Linkage (software)Humanoid robotComputer scienceActuatorControl theory (sociology)Upper bodyRobotArtificial intelligenceControl (management)Physical medicine and rehabilitation
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