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Converter Control

Курс от University of Colorado Boulder
Средний≈ 19.3 чАнглийский
О курсеНавыкиПрограммаПреподаватели

О курсе

This course can also be taken for academic credit as ECEA 5702, part of CU Boulder’s Master of Science in Electrical Engineering degree. This course teaches how to design a feedback system to control a switching converter. The equivalent circuit models derived in the previous courses are extended to model small-signal ac variations. These models are then solved, to find the important transfer functions of the converter and its regulator system. Finally, the feedback loop is modeled, analyzed, and designed to meet requirements such as output regulation, bandwidth and transient response, and rejection of disturbances. Upon completion of this course, you will be able to design and analyze the feedback systems of switching regulators. This course assumes prior completion of courses Introduction to Power Electronics and Converter Circuits.

Навыки, которые вы освоите

Control SystemsPower ElectronicsEngineering AnalysisTechnical DesignSystems AnalysisMathematical ModelingElectronic SystemsApplied MathematicsElectronics EngineeringElectronicsSchematic DiagramsElectrical and Computer EngineeringPlot (Graphics)Systems DesignElectrical EngineeringDifferential Equations

Программа курса

4 модулей · 40 учебных материалов

01Ch 7: AC Equivalent Circuit Modeling13 материалов

Introduction

Course Updates and Accessibility SupportЧтениеNon-Credit Students: Welcome and Where to Find HelpЧтениеIntroduce YourselfОбсуждение

AC Equivalent Circuit Modeling

Sect 7.1 Introduction to AC Modeling

Учитесь у экспертов

Dr. Robert Erickson

Professor

Converter Control
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Обучение на Coursera

≈ 19.3 ч

4 модулей

Язык: Английский

Субтитры: Арабский, Французский, Итальянский, Вьетнамский, Ория, Немецкий, Русский, Испанский

Часть программы вашего университета
Видео
Sects 7.2.1-4 Averaged AC ModelingВидео
*Sect 7.2.2 Discussion of AveragingВидео
Sect 7.2.5 Perturbation and LinearizationВидео
Sects 7.2.6-8 Construction of Equivalent CircuitВидео

Additional Points

Sect 7.6 Modeling the Pulse-Width ModulatorВидеоSect 7.5 The Canonical ModelВидеоSect7.3 State-Space AveragingВидео

Assignment

Homework Assignment 1: Chapter 7ЗаданиеHomework 1 MaterialsЧтение
02Ch 8: Converter Transfer Functions - Part 19 материалов

Design-Oriented Analysis

8.0 Introduction to Design-Oriented AnalysisВидео

Review of Frequency Response and Bode Plots

8.1 Review of Bode Diagrams: PoleВидео8.1.2 Other Basic TermsВидео8.1.5 CombinationsВидео8.1.6 Second-order Response: ResonanceВидео8.1.7 The Low-Q ApproximationВидео8.1.8 Analytical Factoring of Higher-Order PolynomialsВидео

Assignment

Homework Assignment 2: Ch. 8, Transfer FunctionsЗаданиеHomework 2 MaterialsЧтение
03Ch 8: Converter Transfer Functions - Part 27 материалов

Converter Transfer Functions

8.2 Analysis of Converter Transfer FunctionsВидео8.2.2 Transfer Functions of Basic ConvertersВидео8.3.1 Graphical Construction of ImpedancesВидео8.3.3 Graphical Construction of Parallel and More Complex ImpedancesВидео8.3.5 Graphical Construction of Converter Transfer FunctionsВидео

Assignment

Homework Assignment 3: Construction of Transfer FunctionsЗаданиеHomework 3 MaterialsЧтение
04Ch 9: Controller Design11 материалов

Feedback Basics

9.1-2 IntroductionВидео9.3 Construction of Closed-loop Transfer FunctionsВидео9.4.1 StabilityВидео9.4.2 Phase Margin vs. Closed-loop QВидео

Controller Design

9.5 Regulator DesignВидео9.5.4 Design ExampleВидеоOp-amp Compensator DesignВидео9.5.5 Another Example: Point-of-Load RegulatorВидео

Assignment

Homework Assignment 4 (Part 1): FeedbackЗаданиеHomework Assignment 4 (Part 2): Closed-Loop SimulationЗаданиеHW#4 MaterialsЧтение