DocumentCode
1912720
Title
Energy preserving control of a hopping robot based on hybrid port-controlled Hamiltonian modeling
Author
Ishikawa, Masato ; Neki, Atsushi ; Imura, Jun-ichi ; Hara, Shinji
Author_Institution
Graduate Sch. of Inf. Sci. & Technol., Tokyo Univ., Japan
Volume
2
fYear
2003
fDate
23-25 June 2003
Firstpage
1136
Abstract
In this paper, we propose an energy-based approach to feedback control problem for a hopping robot on an elastic ground. In order that the system behaves in a periodic hopping motion, we make an attempt to keep the system´s total energy (Hamiltonian) to a certain specified value. Since our target is inherently a hybrid system that has discontinuous and discrete event dynamics, we suggest a suitable impact model and describe it as a hybrid version of port-controlled Hamiltonian system. Then a passivity based control called IDA (interconnection and damping assignment) is applied to this problem, which results in a good performance in the ideal situation. Moreover, we introduce a servo-like integrator into this controller to reject disturbances due to modeling uncertainty. Efficiency of the proposed method is validated both in simulations and experiments using our newly developed hopping robot system.
Keywords
discrete event systems; modelling; power control; robot dynamics; sampled data systems; servomechanisms; state feedback; IDA; discontinuous dynamic; discrete event dynamics; elastic ground; energy preserving control; feedback control problem; hopping robot; hybrid port-controlled Hamiltonian modeling; hybrid system; interconnection and damping assignment; modeling uncertainty; passivity based control; periodic hopping motion; servo-like integrator; Damping; Feedback control; Information science; Mechanical variables control; Motion control; Optimal control; Power engineering and energy; Robot kinematics; Springs; Uncertainty;
fLanguage
English
Publisher
ieee
Conference_Titel
Control Applications, 2003. CCA 2003. Proceedings of 2003 IEEE Conference on
Print_ISBN
0-7803-7729-X
Type
conf
DOI
10.1109/CCA.2003.1223170
Filename
1223170
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