DocumentCode
760920
Title
On Differential Flatness, Trajectory Planning, Observers, and Stabilization for DC–DC Converters
Author
Gensior, Albrecht ; Woywode, Oliver ; Rudolph, Joachim ; Güldner, Henry
Author_Institution
Elektrotechnisches Inst., Tech. Univ. Dresden
Volume
53
Issue
9
fYear
2006
Firstpage
2000
Lastpage
2010
Abstract
Differential flatness of buck, buck-boost, and boost converter models is shown. Its benefits if used for controlling the output voltage of these converters are revealed by comparing the flatness-based control with passivity-based and linear control. Two observers for the boost converter are suggested one of which requires only the measurement of the converters output voltage. Both observers can be used with minor changes for the buck-boost converter. Two flatness-based online trajectory planning algorithms are suggested. They exploit the parametrization of the trajectories in the energy. One of them is designed to achieve fast setpoint transitions during converter start-up or despite sudden load steps while simultaneously respecting the converters physical constraints. The other one is considered for applications in power factor correction. Different stabilization strategies are compared. The viability of the observers, the algorithm, and the stabilization strategies are verified by simulations of switched nonideal converter models
Keywords
DC-DC power convertors; linear systems; observers; power system control; power system stability; DC-DC converters; boost converter models; buck converter models; buck-boost converter models; converter output voltage; differential flatness; flatness-based control; linear control; passivity-based control; power factor correction; stabilization strategy; switched nonideal converter models; trajectory planning; Control theory; Helium; Inductors; Iterative algorithms; Load management; Power electronics; Power factor correction; Switching converters; Trajectory; Voltage control; DC–DC converters; flatness-based control; observers; passivity-based control (PBC); trajectory planning;
fLanguage
English
Journal_Title
Circuits and Systems I: Regular Papers, IEEE Transactions on
Publisher
ieee
ISSN
1549-8328
Type
jour
DOI
10.1109/TCSI.2006.880342
Filename
1703785
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