Publication | Open Access
Stability polygons reshaping and morphing for smooth multi-contact transitions and force control of humanoid robots
15
Citations
18
References
2016
Year
Unknown Venue
Robot KinematicsEngineeringMechanical EngineeringMotor ControlAdvanced Motion ControlStabilityKinesiologySoft RoboticsMechanical ControlStability PolygonMechanicsSystems EngineeringBio-inspired RoboticsLegged RobotKinematicsHumanoid RobotStability PolygonsHealth SciencesMechatronicsBilateral ContactsControl DesignHumanoid RobotsMotion ControlRobot ControlAerospace EngineeringSmooth Multi-contact TransitionsMechanical SystemsRoboticsVibration Control
In this paper we provide hindsight on how to use the information provided by the explicit computation of the stability polygon and build on task-based QP controllers to achieve both stable multi-contact smooth transitions and force control without jeopardizing stability. This entails computing stability polygons with unilateral and bilateral contacts and devising a method to continuously constrain the CoM position throughout multi-contact motion in order to effectively regulate the forces applied on the environment while avoiding hard constraints on the CoM and discontinuity between stances.
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