DocumentCode :
728286
Title :
Robust cascade control of DC/DC boost converter against input variation and parameter uncertainties
Author :
In Hyuk Kim ; Young Ik Son
Author_Institution :
Dept. of Electr. Eng., Myongji Univ., Yongin, South Korea
fYear :
2015
fDate :
1-3 July 2015
Firstpage :
2567
Lastpage :
2572
Abstract :
A DC/DC boost converter is a highly nonlinear system and subject to various uncertainties, such as load change, input voltage variation, and parametric uncertainties. In order to achieve a robust performance for the converter´s current and voltage output responses against the uncertainties, this paper proposes the use of a robust cascade controller based on a reduced-order proportional-integral observer (PIO). In the proposed design, a cascade approach is adopted, where an integral-proportional (IP) controller and a proportional-integral (PI) controller are constructed to set a nominal, desired dynamic response for the closed-loop system. A theoretical analysis, based on the singular perturbation theory, is presented, to confirm the desired approximation of the augmented system with the PIO to the nominal system without the uncertainties. Simulation results suggest that the additional compensation using dual PIOs can be effectively used to improve the robust performance against load change, input voltage variation, and parametric uncertainties.
Keywords :
PI control; cascade control; nonlinear systems; observers; power convertors; reduced order systems; robust control; DC/DC boost converter; augmented system; closed-loop system; converter current; desired dynamic response; highly nonlinear system; input variation; input voltage variation; integral-proportional controller; load change; nominal dynamic response; parameter uncertainties; parametric uncertainties; proportional-integral controller; reduced-order proportional-integral observer; robust cascade controller; singular perturbation theory; voltage output responses; IP networks; Mathematical model; Observers; Robustness; Uncertain systems; Uncertainty; Voltage control;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
American Control Conference (ACC), 2015
Conference_Location :
Chicago, IL
Print_ISBN :
978-1-4799-8685-9
Type :
conf
DOI :
10.1109/ACC.2015.7171121
Filename :
7171121
Link To Document :
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