首页 /研究 /Walking stabilization using step timing and location adjustment on the humanoid robot, Atlas
OTHER

Walking stabilization using step timing and location adjustment on the humanoid robot, Atlas

发表年份
2017
引用次数
82

摘要

While humans are highly capable of recovering from external disturbances and uncertainties that result in large tracking errors, humanoid robots have yet to reliably mimic this level of robustness. Essential to this is the ability to combine traditional “ankle strategy” balancing with step timing and location adjustment techniques. In doing so, the robot is able to step quickly to the necessary location to continue walking. In this work, we present both a new swing speed up algorithm to adjust the step timing, allowing the robot to set the foot down more quickly to recover from errors in the direction of the current capture point dynamics, and a new algorithm to adjust the desired footstep, expanding the base of support to utilize the center of pressure (CoP)-based ankle strategy for balance. We then utilize the desired centroidal moment pivot (CMP) to calculate the momentum rate of change for our inverse-dynamics based whole-body controller. We present simulation and experimental results using this work, and discuss performance limitations and potential improvements.

关键词

Humanoid robotRobotCenter of pressure (fluid mechanics)SwingSet (abstract data type)Control theory (sociology)Moment (physics)Point (geometry)Zero moment point

相关论文

查看 OTHER 分类全部论文