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Analysis and control of the chaotic behavior in a multi-cell DC/DC buck converter / Karama Koubaâ.

By: Material type: TextTextSeries: Electrical engineering developmentsPublisher: Hauppauge, New York : Nova Science Publisher's, Inc., [2017]Description: 1 online resourceContent type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9781536139990
  • 1536139998
Subject(s): Genre/Form: Additional physical formats: Print version:: Analysis and control of the chaotic behavior in a multi-cell DCDC buck converterDDC classification:
  • 621.31/32 23
LOC classification:
  • TK7872.C8
Online resources:
Contents:
Chaotic behavior in dynamical systems -- Modeling of a multi-cell DC/DC buck converter -- Chaos, bifurcations and strange phenomena in the two-cell converter -- Dynamic control of the converter.
Summary: "Multi-cell power converters have been widely used in real applications since they circumvent shortcomings of ordinary switching devices due to their ability to support high-voltages. In this book, we deal with the case of an N-cell DC/DC buck converter, and we present a systematic method to control the voltage across the flying capacitors and the current through the load that can be generalized from a two-cell converter to an N-cell converter. The system was described by a discrete-time model through some simplifying assumptions to derive easily the general model in the form of a recurrence equation, which is useful in the design of control laws and exhibits chaotic behavior, bifurcations and strange phenomena when applying feedback control methods. In addition, the problem of the windup phenomenon, which is caused by the effect of switching, was discussed along with an anti-windup approach that was developed and successfully applied to the controlled DC/DC buck converter. A generalization of the various control laws adopted and a comparison between the results obtained with these methods were given, including the performance of the controlled system and the types of bifurcations encountered. Throughout this work, it has been shown that as the number of cells in the converter increases, the complexity of the uncontrolled system model and the closed loop system also increases"-- Provided by publisher.
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"Multi-cell power converters have been widely used in real applications since they circumvent shortcomings of ordinary switching devices due to their ability to support high-voltages. In this book, we deal with the case of an N-cell DC/DC buck converter, and we present a systematic method to control the voltage across the flying capacitors and the current through the load that can be generalized from a two-cell converter to an N-cell converter. The system was described by a discrete-time model through some simplifying assumptions to derive easily the general model in the form of a recurrence equation, which is useful in the design of control laws and exhibits chaotic behavior, bifurcations and strange phenomena when applying feedback control methods. In addition, the problem of the windup phenomenon, which is caused by the effect of switching, was discussed along with an anti-windup approach that was developed and successfully applied to the controlled DC/DC buck converter. A generalization of the various control laws adopted and a comparison between the results obtained with these methods were given, including the performance of the controlled system and the types of bifurcations encountered. Throughout this work, it has been shown that as the number of cells in the converter increases, the complexity of the uncontrolled system model and the closed loop system also increases"-- Provided by publisher.

Includes bibliographical references and index.

Chaotic behavior in dynamical systems -- Modeling of a multi-cell DC/DC buck converter -- Chaos, bifurcations and strange phenomena in the two-cell converter -- Dynamic control of the converter.

Description based on print version record and CIP data provided by publisher.

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