DocumentCode :
12176
Title :
Energy-Efficient Gait Planning and Control for Biped Robots Utilizing the Allowable ZMP Region
Author :
Hyeok-Ki Shin ; Byung Kook Kim
Author_Institution :
Korea Adv. Inst. of Sci. & Technol., Daejeon, South Korea
Volume :
30
Issue :
4
fYear :
2014
fDate :
Aug. 2014
Firstpage :
986
Lastpage :
993
Abstract :
Energy-efficient gait planning and control is established for biped robots, which utilizes the allowable zero moment point (ZMP) region. Based on 3-D linear inverted pendulum mode (LIPM), we construct a practical gait planning algorithm for a given travel distance minimizing the energy consumed by the actuators of humanoid joints with 1) an online gait synthesis (GSYN) algorithm to generate a complete walking cycle (a starting step, several cyclic steps, and a stopping step) compromising waking stability and energy efficiency at the fully utilizing allowable ZMP region and with 2) effective gait parameter optimization to maximize the energy efficiency of the gaits generated by GSYN, finding two optimal parameters-number of steps and average walking speed-satisfying geometrical constraints, friction force limit, and yawing moment limit to guarantee feasible motions. The proposed algorithm was verified through simulations, and the gait control system was implemented on a DARwIn-OP humanoid robot.
Keywords :
gait analysis; humanoid robots; legged locomotion; nonlinear control systems; path planning; pendulums; stability; 3D LIPM; 3D linear inverted pendulum mode; DARwIn-OP humanoid robot; GSYN algorithm; ZMP region; biped robots; cyclic steps; energy efficiency; energy-efficient control; energy-efficient gait planning; friction force limit; gait control system; gait parameter optimization; geometrical constraints; humanoid joints; online gait synthesis algorithm; starting step; stopping step; waking stability; walking cycle; walking speed; yawing moment limit; zero moment point region; Digital signal processing; Foot; Force; Legged locomotion; Planning; Trajectory; Allowable zero-moment-point (ZMP) region; energy-efficient gait planning; humanoid robot;
fLanguage :
English
Journal_Title :
Robotics, IEEE Transactions on
Publisher :
ieee
ISSN :
1552-3098
Type :
jour
DOI :
10.1109/TRO.2014.2305792
Filename :
6750116
Link To Document :
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