Publication | Closed Access
Estimation of the center of mass of humanoid robot
24
Citations
5
References
2007
Year
Unknown Venue
Robot KinematicsMotion ControlBipedal LocomotionKinesiologyEngineeringField RoboticsMechatronicsMechanical SystemsClosed-loop ObserverAdvanced Motion ControlKinematicsHuman MovementRoboticsHumanoid RobotHumanoid ComJoint AnglesHealth Sciences
A closed-loop observer is suggested which can extract more reliable estimates of humanoid CoM than the CoM conversion method of using just joint angle measurements. The discrete Kalman fillter is adopted as the estimation framework, where the two heterogeneous measurements of ZMP and joint angles are fused to produce optimal outputs in the sense of minimum variance of estimation error. Simulation results show that the developed closed-loop CoM observer is more beneficial than the popularly used open-loop type CoM conversion equation, especially when the robot has severe parametric uncertainties and external disturbances.
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