DocumentCode
1203797
Title
Effect of Model Complexity and Gait Criteria on the Synthesis of Bipedal Locomotion
Author
Townsend, Miles A. ; Seireg, Ali A.
Author_Institution
Department of Mechanical Engineering, University of Toronto, Toronto, Ont., Canada.
Issue
6
fYear
1973
Firstpage
433
Lastpage
444
Abstract
The control functions, system motions, and other characteristics which are obtained from the mathematical synthesis of ``optimal´´ bipedal locomotion gaits with respect to locomotion criteria (to be minimized) defined in the paper are considered. Results are presented for three mathematical biped models and several locomotion criteria (objective functions). Optimal walking trajectories and associated control functions are synthesized using the optimal programming method of [1]. In the synthesis approach, the model structure and locomotion criterion determine the optimal controls motion and foot placement parameters. These effects are examined, and qualitative comparisons to human walking patterns are suggested. These studies also provide quantitative information for the design of prostheses and walking machines, for example: ranges of suitable motion patterns (as functions of time) and magnitudes of controlling efforts and energy requirements.
Keywords
Biological system modeling; Control system synthesis; Control systems; Humans; Legged locomotion; Mathematical model; Mechanical engineering; Motion control; Optimal control; Prosthetics; Artificial Limbs; Biomechanics; Evaluation Studies as Topic; Gait; Humans; Locomotion; Man-Machine Systems; Mathematics; Models, Biological; Prosthesis Design; Sports;
fLanguage
English
Journal_Title
Biomedical Engineering, IEEE Transactions on
Publisher
ieee
ISSN
0018-9294
Type
jour
DOI
10.1109/TBME.1973.324217
Filename
4120693
Link To Document