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Marian K. Kazimierczuk - Average Current-Mode Control of DC-DC Power Converters

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AVERAGE CURRENT-MODE CONTROL OF DC-DC POWER CONVERTERS

An authoritative one-stop guide to the analysis, design, development, and control of a variety of power converter systems

Average Current-Mode Control of DC-DC Power Converters provides comprehensive and up-to-date information about average current-mode control (ACMC) of pulse-width modulated (PWM) dc-dc converters. This invaluable one-stop resource covers both fundamental and state-of-the-art techniques in average current-mode control of power electronic converters???featuring novel small-signal models of non-isolated and isolated converter topologies with joint and disjoint switching elements and coverage of frequency and time domain analysis of controlled circuits.

The authors employ a systematic theoretical framework supported by step-by-step derivations, design procedures for measuring transfer functions, challenging end-of-chapter problems, easy-to-follow diagrams and illustrations, numerous examples for different power supply specifications, and practical tips for developing power-stage small-signal models using circuit-averaging techniques. The text addresses all essential aspects of modeling, design, analysis, and simulation of average current-mode control of power converter topologies, such as buck, boost, buck-boost, and flyback converters in operating continuous-conduction mode (CCM). Bridging the gap between fundamental modeling methods and their application in a variety of switched-mode power supplies, this book:

  • Discusses the development of small-signal models and transfer functions related to the inner current and outer voltage loops
  • Analyzes inner current loops with average current-mode control and describes their dynamic characteristics
  • Presents dynamic properties of the poles and zeros, time-domain responses of the control circuits, and comparison of relevant modeling techniques
  • Contains a detailed chapter on the analysis and design of control circuits in time-domain and frequency-domain
  • Provides techniques required to produce professional MATLAB plots and schematics for circuit simulations, including example MATLAB codes for the complete design of PWM buck, boost, buck-boost, and flyback DC-DC converters
  • Includes appendices with design equations for steady-state operation in CCM for power converters, parameters of commonly used power MOSFETs and diodes, SPICE models of selected MOSFETs and diodes, simulation tools including introductions to SPICE, MATLAB, and SABER, and MATLAB codes for transfer functions and transient responses

Average Current-Mode Control of DC-DC Power Converters is a must-have reference and guide for researchers, advanced graduate students, and instructors in the area of power electronics, and for practicing engineers and scientists specializing in advanced circuit modeling methods for various converters at different operating conditions.

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Table of Contents List of Tables Chapter 2 Chapter 3 Chapter 4 Chapter - photo 1
Table of Contents
List of Tables
  1. Chapter 2
  2. Chapter 3
  3. Chapter 4
  4. Chapter 5
  5. Appendix A: Design Equations for ContinuousConduction Mode
  6. Appendix F: Simulation Tools
List of Illustrations
  1. Chapter 1
  2. Chapter 2
  3. Chapter 3
  4. Chapter 4
  5. Chapter 5
  6. Appendix F: Simulation Tools
Guide
Pages
Average Current-Mode Control of DC-DC Power Converters

Marian K. Kazimierczuk, Dalvir K. Saini, and Agasthya Ayachit

Department of Electrical Engineering, Wright State University, Dayton, Ohio, USA

This edition first published 2022 2022 John Wiley Sons Ltd All rights - photo 2

This edition first published 2022

2022 John Wiley & Sons Ltd

All rights reserved. No part of this publication may be reproduced, stored in a retrieval system, or transmitted, in any form or by any means, electronic, mechanical, photocopying, recording or otherwise, except as permitted by law. Advice on how to obtain permission to reuse material from this title is available at http://www.wiley.com/go/permissions.

The right of Marian K. Kazimierczuk, Dalvir K. Saini, and Agasthya Ayachit to be identified as the authors of this work has been asserted in accordance with law.

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John Wiley & Sons, Inc., 111 River Street, Hoboken, NJ 07030, USA

John Wiley & Sons Ltd, The Atrium, Southern Gate, Chichester, West Sussex, PO19 8SQ, UK

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For details of our global editorial offices, customer services, and more information about Wiley products visit us at www.wiley.com.

Wiley also publishes its books in a variety of electronic formats and by printondemand. Some content that appears in standard print versions of this book may not be available in other formats.

Limit of Liability/Disclaimer of Warranty

While the publisher and authors have used their best efforts in preparing this work, they make no representations or warranties with respect to the accuracy or completeness of the contents of this work and specifically disclaim all warranties, including without limitation any implied warranties of merchantability or fitness for a particular purpose. No warranty may be created or extended by sales representatives, written sales materials or promotional statements for this work. The fact that an organization, website, or product is referred to in this work as a citation and/or potential source of further information does not mean that the publisher and authors endorse the information or services the organization, website, or product may provide or recommendations it may make. This work is sold with the understanding that the publisher is not engaged in rendering professional services. The advice and strategies contained herein may not be suitable for your situation. You should consult with a specialist where appropriate. Further, readers should be aware that websites listed in this work may have changed or disappeared between when this work was written and when it is read. Neither the publisher nor authors shall be liable for any loss of profit or any other commercial damages, including but not limited to special, incidental, consequential, or other damages.

Library of Congress CataloginginPublication Data

Names: Kazimierczuk, Marian K., author. | Saini, Dalvir K., author. | Ayachit, Agasthya, author.

Title: Average current-mode control of DC-DC power converters / Marian K. Kazimierczuk, Dalvir K. Saini, and Agasthya Ayachit.

Description: Hoboken, NJ : Wiley, 2022. | Includes bibliographical references and index.

Identifiers: LCCN 2021039426 (print) | LCCN 2021039427 (ebook) | ISBN 9781119525653 (cloth) | ISBN 9781119525561 (adobe pdf) | ISBN 9781119525684 (epub)

Subjects: LCSH: Electric controllers. | DC-to-DC converters.

Classification: LCC TK2851 .K39 2022 (print) | LCC TK2851 (ebook) | DDC 621.31/32dc23

LC record available at https://lccn.loc.gov/2021039426

LC ebook record available at https://lccn.loc.gov/2021039427

Cover Design: Wiley

Cover Image: Image by Dalvir Saini

List of Symbols
Aiload currenttoinductor current transfer function
AioDC gain of load currenttoinductor current transfer function
BWbandwidth
Cfilter capacitance
Cotransistor output capacitance
DDC component of onswitch duty cycle
Dcrcritical duty cycle of switch
dAC component of onswitch duty cycle
dTlargesignal onswitch duty cycle
fcgain crossover frequency
fzfrequency of zero of transfer function
focorner frequency or natural frequency
fpfrequency of pole of transfer function
fsswitching frequency
IDaverage or DC component of diode current
idsmallsignal AC component of diode current
iDlargesignal diode current
IIaverage or DC component of input current
iismallsignal AC component of input current
iIlargesignal component of input current
ILaverage or DC component of inductor current
ilsmallsignal AC component of inductor current
iLlargesignal inductor current
IODC component of load current
iosmallsignal AC component of load current
iOlargesignal load current
ISDC component of switch current
issmallsignal AC component of switch current
iSlargesignal switch current
iClargesignal filter capacitor current
Linductor or inductance
Mdiinput voltage to dutycycle transfer function relevant to innercurrent loop
Mdvinput voltage to dutycycle transfer function relevant to outervoltage loop
MMIDDC current transfer function of converter
MMicinput voltagetoinductor current transfer function
Mvopenloop inputtooutput voltage transfer function
MMVDDC voltage transfer function of a converter
MMvcinputtooutput voltage transfer function relevant to outervoltage loop
Mviopenloop input voltagetoinductor current transfer function
MMvicinputtooutput voltage transfer function relevant to innercurrent loop
MMviopenloop input voltagetoinductor current transfer function at DC
Mvoopenloop inputtooutput voltage function at DC
PMphase margin
PIconverter DC input power
PLSconverter power loss
POconverter DC output power
PRFconduction loss in diode forward resistance RF
PrCconduction loss in equivalent series resistance of the filter capacitor
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