DocumentCode :
3731076
Title :
Hamiltonian control stabilization for grid-side converters in doubly-fed wind turbines
Author :
Cui Wang; Jun Zhou
Author_Institution :
Department of Automatic Control Engineering School of Energy and Electrical Engineering, Hohai University Naniing211100, China
fYear :
2015
Firstpage :
1252
Lastpage :
1257
Abstract :
Based on the Hamiltonian energy theory, the nonlinear models for a class of grid-side converters are transformed into the Hamiltonian models and then the grid-side converter stabilization control laws for doubly-fed wind turbines are contrived such that the closed-loop systems can achieve stability, besides other power improvements. The suggested control method makes it possible to reduce the closed-loop system fluctuations and obtain quicker recovery from voltage dropping, while the direct-current (DC) bus voltage is stabilized swiftly. The Hamiltonian energy approach provides us with a simpler implementation procedure of the controller design, and the resulted controllers have stronger robustness performance. Numerical illustrations show that the proposed Hamiltonian method is effective and satisfactory.
Keywords :
"Matrix converters","Pulse width modulation"
Publisher :
ieee
Conference_Titel :
Chinese Automation Congress (CAC), 2015
Type :
conf
DOI :
10.1109/CAC.2015.7382691
Filename :
7382691
Link To Document :
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