4.7 Article

Analysis and control of chaotic behavior in boost converter by ramp compensation based on Lyapunov exponents assignment: theoretical and experimental investigation

Journal

CHAOS SOLITONS & FRACTALS
Volume 81, Issue -, Pages 20-29

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.Chaos.2015.08.010

Keywords

Cliaos; Bifurcation; Switching converter; Discrete-time modeling; Converter stability; Lyapunov exponents

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Nonlinear analysis of complex dynamics displayed by current mode dc-dc converter and idea of Lyapunov exponents assignment by ramp compensator in order to control chaotic behavior is proposed in this article. A discrete-time iterative nonlinear mapping model is derived. The occurrence of the complex behaviors of bifurcation and chaos generated by varying the circuit parameters are investigated through numerical analysis and software implementation of the circuit. Next, in order to control bifurcation and chaos in these converters, the ramp compensation method is used By inserting the ramp compensation parameter in the dynamical equations of the system, these complex behaviors are examined theoretically and numerically as well. It is proved that through this method, the stable period-one operation of the converter can be extended. By evaluating the Lyapunov exponents (LEs) of the system, the impact of the slope on the location of LEs are determined analytically. This leads to a design methodology for control of chaos in this converter based on LEs assignment in desired values by proper selection of compensator slope. By developing an experimental set tip, practical results are obtained to confirm the theoretical analysis and simulations. (C) 2015 Elsevier Ltd. All rights reserved

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