首页 /研究 /Seamless Reaction Strategy for Bipedal Locomotion Exploiting Real-Time Nonlinear Model Predictive Control
LOCOMOTION

Seamless Reaction Strategy for Bipedal Locomotion Exploiting Real-Time Nonlinear Model Predictive Control

JongHun Choe, Joon-Ha Kim, Seungwoo Hong, Jinoh Lee, Hae-Won Park

发表年份
2023
引用次数
22

摘要

This letter presents a reactive locomotion method for bipedal robots enhancing robustness and external disturbance rejection performance by seamlessly rendering several walking strategies of the ankle, hip, and footstep adjustment. The Nonlinear Model Predictive Control (NMPC) is formulated to take into account nonlinear Divergent Component of Motion (DCM) error dynamics that predicts the future states of the robot in response to the walking strategies. This formulated NMPC enables the seamless application of these strategies improving push disturbance rejection performance. The proposed controller is validated in simulation and through an experiment on a bipedal robot platform, Gazelle, which confirms its effectiveness in real-time.

关键词

Model predictive controlRobustness (evolution)Control theory (sociology)RobotNonlinear modelNonlinear systemComputer scienceRobot locomotionRendering (computer graphics)Control engineering

相关论文

查看 LOCOMOTION 分类全部论文