Por favor, use este identificador para citar o enlazar este ítem: http://hdl.handle.net/11531/5209
Título : Design and comparison of state-feedback and predictive-integral current controllers for active- and reactive-power control in renewable energy systems
Autor : Roncero Sánchez-Elipe, Pedro Luis
Feliú Batlle, Vicente
García Cerrada, Aurelio
Fecha de publicación : 1-feb-2009
Resumen : This paper deals with the design of a predictive-integral current controller for renewable energy systems connected to the grid through PWM voltage-source converters. The control system is tailored to achieve a deadbeat-type response to set-point step changes and decoupled active- and reactive-power control. An alternative approach is designed by using a state-feedback controller. Both control systems are compared in terms of the robustness of the closed-loop dynamic response and the active and reactive-power coupling when system-modelling errors exist. Simulation and experimental results show that the predictive-integral approach is superior.
This paper deals with the design of a predictive-integral current controller for renewable energy systems connected to the grid through PWM voltage-source converters. The control system is tailored to achieve a deadbeat-type response to set-point step changes and decoupled active- and reactive-power control. An alternative approach is designed by using a state-feedback controller. Both control systems are compared in terms of the robustness of the closed-loop dynamic response and the active and reactive-power coupling when system-modelling errors exist. Simulation and experimental results show that the predictive-integral approach is superior.
Descripción : Artículos en revistas
URI : https://doi.org/10.1016/j.conengprac.2008.07.003
ISSN : 0967-0661
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