DocumentCode
3802745
Title
Compensator Design and Stability Assessment for Fast Voltage Loops of Power Factor Correction Rectifiers
Author
Aleksandar Prodic
Author_Institution
Toronto Univ., Toronto
Volume
22
Issue
5
fYear
2007
Firstpage
1719
Lastpage
1730
Abstract
This paper introduces a new method for stability analysis and design of fast voltage-loop compensators in rectifiers with power factor correction (PFC). The method has few constraints and can be used with various implementations of the fast voltage loop. It is based on utilization of circle criterion, which unifies frequency domain and nonlinear system analysis. A step-by-step procedure of stability assessment and compensator design is described and demonstrated on two controller implementations. In the first system, the voltage-loop dynamic response of an experimental 200-W digitally-controlled boost-based PFC is improved with a self-tuning comb filter. In the second implementation, it is shown how the circle criterion can be used to design a fast voltage loop for controllers with regulation band, i.e., ldquodead-zone,rdquo element for ripple elimination.
Keywords
"Stability","Power factor correction","Rectifiers","Voltage control","Frequency","Filters","Switching converters","Bandwidth","Resistors","Circuits"
Journal_Title
IEEE Transactions on Power Electronics
Publisher
ieee
ISSN
0885-8993
Type
jour
DOI
10.1109/TPEL.2007.904205
Filename
4300895
Link To Document