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Magnetics for Power Electronic Converters · LearnSpace
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Magnetics for Power Electronic Converters

Курс от University of Colorado Boulder
Средний≈ 17.2 чАнглийский
О курсеНавыкиПрограммаПреподаватели

О курсе

This course can also be taken for academic credit as ECEA 5703, part of CU Boulder’s Master of Science in Electrical Engineering degree. This course covers the analysis and design of magnetic components, including inductors and transformers, used in power electronic converters. The course starts with an introduction to physical principles behind inductors and transformers, including the concepts of inductance, core material saturation, airgap and energy storage in inductors, reluctance and magnetic circuit modeling, transformer equivalent circuits, magnetizing and leakage inductance. Multi-winding transformer models are also developed, including inductance matrix representation, for series and parallel structures. Modeling of losses in magnetic components covers core and winding losses, including skin and proximity effects. Finally, a complete procedure is developed for design optimization of inductors in switched-mode power converters.   After completing this course, you will: - Understand the fundamentals of magnetic components, including inductors and transformers - Be able to analyze and model losses in magnetic components, and understand design trade-offs  - Know how to design and optimize inductors and transformers for switched-mode power converters This course assumes prior completion of courses 1 and 2: Introduction to Power Electronics, and Converter Circuits.

Навыки, которые вы освоите

Power ElectronicselectromagneticsEngineering AnalysisElectrical SystemsDesign SpecificationsElectronicsElectronics EngineeringEngineering Design ProcessElectronic ComponentsMathematical ModelingElectrical EngineeringEngineering CalculationsTechnical Design

Программа курса

4 модулей · 39 учебных материалов

01Basic Magnetics12 материалов

Introduction to the Course

Course Updates and Accessibility SupportЧтениеNon-Credit Students: Welcome and Where to Find HelpЧтениеA Brief Introduction to the CourseВидеоCourse SyllabusЧтение

Basic Magnetics: Basic Relationships

Учитесь у экспертов

Dr. Robert Erickson

Professor

Magnetics for Power Electronic Converters
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Обучение на Coursera

≈ 17.2 ч

4 модулей

Язык: Английский

Субтитры: Арабский, Французский, Украинский, Китайский (Китай), Греческий, Итальянский, Бразильский португальский, Вьетнамский, Нидерландский, Корейский, Ория, Немецкий, Русский, Тайский, Индонезийский, Шведский, Турецкий, Испанский, Хинди, Японский, Казахский, Польский

Часть программы вашего университета
10.1.1 Basic RelationshipsВидео

Magnetic Circuits

Lecture 10.1.2: Magnetic CircuitsВидео

Transformer Modeling

Lecture 10.2: Transformer ModelingВидео

Core and Copper Loss

10.3 Loss Mechanisms in Magnetic DevicesВидео

Homework Assignment 1: Basic Magnetics

Study Problems on Basic MagneticsЧтениеMagnetics Design TablesЧтениеHomework AssignmentЧтениеHomework Assignment 1: Basic MagneticsЗадание
02AC Copper Losses10 материалов

Introduction to the Skin and Proximity Effects

10.4.1 Introduction to the Skin and Proximity EffectsВидео

Leakage Flux in Windings

10.4.2: Leakage Flux in WindingsВидео

Foil Windings and Layers

10.4.3: Foil Windings and LayersВидео

Power Loss in a Layer

10.4.4 Power Loss in a LayerВидео

Example: Power Loss in a Transformer Winding

10.4.5 Example: Power Loss in a Transformer WindingВидео

Interleaving the Windings

10.4.6 Interleaving the WindingsВидео

PWM Waveform Harmonics

10.4.7 PWM Waveform HarmonicsВидео

Homework Assignment 2: Skin and Proximity Effects

Study ProblemsЧтениеHomework Assignment 2: AC Winding LossesЧтениеHomework Assignment 2: AC Winding LossesЗадание
03Inductor Design10 материалов

Several Types of Magnetic Devices

10.5 Several Types of Magnetic Devices, their B-H Loops, and Core vs. Copper LossВидео

Filter Inductor Design Constraints

11.1 Filter Inductor Design ConstraintsВидео

The Kg Method: First-Pass Inductor Design

11.2 A First-Pass DesignВидео

Multiple Windings: Window Area Allocation

11.3.1 Window Area AllocationВидео

Coupled-Inductor Design Constraints

11.3.2 Coupled Inductor Design ConstraintsВидео

First-Pass Design of Multi-Winding Inductors

11.3.3 First-Pass Design Procedure: Coupled InductorВидео

Example: Coupled Inductor for Two-Output Forward Converter

11.4.1 Example: Coupled Inductor for a Two-Output Forward ConverterВидео

Example: Flyback Transformer

11.4.2 Example: CCM Flyback TransformerВидео

Homework Assignment 3: Inductor Design

Homework Assignment 3: Inductor DesignЧтениеHW3: Inductor DesignЗадание
04Transformer Design7 материалов

Transformer Design: Basic Constraints

12.1 Transformer Design: Basic ConstraintsВидео

First-Pass Transformer Design

12.2 First-Pass Transformer Design ProcedureВидео

Example: Single-Output Cuk Converter

12.3.1 Example: Single-Output Isolated Cuk ConverterВидео

Example: Multiple-Output Full-Bridge Buck Converter

12.3.2 Example 2: Multiple-Output Full Bridge Buck ConverterВидео

AC Inductor Design

12.4 AC Inductor DesignВидео

Homework Assignment 4: Transformer Design

Homework Assignment 4: Transformer DesignЧтениеHW4: Transformer DesignЗадание