DocumentCode
1522889
Title
Study of bifurcations in current-programmed DC/DC boost converters: from quasiperiodicity to period-doubling
Author
Chan, William C Y ; Tse, Chi K.
Author_Institution
Dept. of Electron. Eng., Hong Kong Polytech., Hung Hom, Hong Kong
Volume
44
Issue
12
fYear
1997
fDate
12/1/1997 12:00:00 AM
Firstpage
1129
Lastpage
1142
Abstract
This paper studies the bifurcation paths exhibited by a simple second-order DC/DC boost converter under current-programmed control with and without voltage feedback. Previous work in this area has reported two distinct types of bifurcation paths, namely via regions of quasi-periodic orbits and period-doubling. This paper demonstrates that the two different types of bifurcation paths can, in fact, be viewed as part of another bifurcation in which the quasi-periodic sequence transmutes into the period-doubling sequence, and that such a bifurcation is observed regardless of the presence of the outer voltage feedback loop as long as a suitable set of bifurcation parameters is chosen. The describing iterative map is derived in closed form and is used to develop the main results via a series of computer experiments. The characteristic multipliers are calculated and the first onset of flip-bifurcation is predicted. Computer simulation based on an exact piecewise switched model confirms the predicted bifurcations. The exhibition of quasi-periodic orbits is confirmed by computation of the Lyapunov exponent. Finally, a series of return maps are generated to provide an alternative viewpoint to the reported bifurcations in terms of a transmutation from a tent-like map to a logistic-like map
Keywords
DC-DC power convertors; Lyapunov methods; bifurcation; chaos; circuit feedback; iterative methods; piecewise-linear techniques; Lyapunov exponent; bifurcations; characteristic multipliers; current-programmed DC/DC boost converters; exact piecewise switched model; flip-bifurcation; iterative map; logistic-like map; period-doubling; quasiperiodicity; return maps; tent-like map; voltage feedback; Bifurcation; Chaos; Circuits; Computer simulation; DC-DC power converters; Feedback loop; Orbital calculations; Orbits; Predictive models; Voltage control;
fLanguage
English
Journal_Title
Circuits and Systems I: Fundamental Theory and Applications, IEEE Transactions on
Publisher
ieee
ISSN
1057-7122
Type
jour
DOI
10.1109/81.645154
Filename
645154
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