DocumentCode
251086
Title
Human-inspired walking via unified PD and impedance control
Author
Wen-Loong Ma ; Hui-Hua Zhao ; Kolathaya, Shishir ; Ames, A.D.
Author_Institution
Dept. of Mech. Eng., Texas A & M Univ., College Station, TX, USA
fYear
2014
fDate
May 31 2014-June 7 2014
Firstpage
5088
Lastpage
5094
Abstract
This paper describes a torque control scheme unifying feedback PD control and feed-forward impedance control to realize human-inspired walking on a novel planar footed bipedal robot: AMBER2. It starts with high fidelity modeling of the robot including nonlinear dynamics, motor model, and impact dynamics. Human data is then used by an optimization algorithm to produce a human-like gait that can be implemented on the robot. To realize the bipedal walking, first a PD controller is utilized to track the optimized trajectory. Next, impedance control parameters are estimated from the experimental data. Finally, the unified PD, impedance torque control law is experimentally realized on the bipedal robot AMBER2. Through the evidence of sustainable and unsupported walking on AMBER2 showing high consistency with the simulated gait, the feasibility of AMBER2 walking scheme will be verified.
Keywords
PD control; feedback; feedforward; legged locomotion; optimisation; robot dynamics; torque control; trajectory control; AMBER2 walking scheme; bipedal walking; feed-forward impedance control; feedback PD control; human-inspired walking; human-like gait; impact dynamics; impedance torque control law; motor model; nonlinear dynamics; optimization algorithm; planar footed bipedal robot; trajectory control; Hip; Impedance; Joints; Legged locomotion; PD control; Torque;
fLanguage
English
Publisher
ieee
Conference_Titel
Robotics and Automation (ICRA), 2014 IEEE International Conference on
Conference_Location
Hong Kong
Type
conf
DOI
10.1109/ICRA.2014.6907605
Filename
6907605
Link To Document