К содержимому
learnspaceYOUR NEXT CHAPTER
ПРОСТРАНСТВО ОБУЧЕНИЯ
ГлавнаяКаталог курсовМоё обучениеCoursera

Знания без границ

Учитесь у лучших университетов и компаний мира.

Открыть Coursera
Интеграция
Пространство университета
Моё пространствоСтраница курса
↵
ЯЛичный кабинетСтудент
© 2026 LearnSpaceКаждый день — возможность узнать больше.Помощь
Current-Mode Control · LearnSpace
Назад в каталог
courseraИнженерия

Current-Mode Control

Курс от University of Colorado Boulder
Средний≈ 14.4 чАнглийский
О курсеНавыкиПрограммаПреподаватели

О курсе

This course can also be taken for academic credit as ECEA 5708, part of CU Boulder’s Master of Science in Electrical Engineering degree. This is Course #4 in the Modeling and Control of Power Electronics course sequence. The course is focused on current-mode control techniques, which are very frequently applied in practical realizations of switched-mode. Practical advantages of peak current mode control are discussed, including built-in overcurrent protection, simpler and more robust dynamic responses, as well as abilities to ensure current sharing in parallel connected converter modules. For peak current-mode controlled converters, slope compensation, and high-frequency effects are discussed in detail. Upon completion of the course, you will be able to understand, analyze, model, and design high-performance current-mode controllers for dc-dc power converters, including peak current-mode controllers and average current-mode controllers. We strongly recommend students complete the CU Boulder Power Electronics specialization as well as Course #1 (Averaged-Switch Modeling and Simulation) before enrolling in this course (the course numbers provided below are for students in the CU Boulder's MS-EE program): ● Introduction to Power Electronics (ECEA 5700) ● Converter Circuits (ECEA 5701) ● Converter Control (ECEA 5702) ● Averaged-Switch Modeling and Simulation (ECEA 5705) After completing this course, you will be able to: ● Understand the operating principles and benefits of current-mode control for dc-dc converters ● Model and design peak current-mode controlled dc-dc converters ● Model and design average current-mode controlled dc-dc converters ● Use computer-aided tools and simulations to verify current-mode controlled dc-dc converters

Навыки, которые вы освоите

Control SystemsSimulationsPower ElectronicsElectrical EngineeringElectronics EngineeringMathematical ModelingSimulation and Simulation SoftwareElectronicsEngineering AnalysisElectrical Power

Программа курса

4 модулей · 50 учебных материалов

01Peak Current-Mode Control: Simple Model19 материалов

Introduction to Current-Mode Control

Course Updates and Accessibility SupportЧтениеNon-Credit Students: Welcome and Where to Find HelpЧтениеIntroduction to the CourseЧтениеIntroduce YourselfОбсуждение

Учитесь у экспертов

Dr. Dragan Maksimovic

Charles V. Schelke Endowed Professor

Current-Mode Control
В каталоге вашей программы

Инвестируйте в себя

Новые знания — в удобное для вас время.

Начать на Coursera

Обучение откроется на Coursera
в новой вкладке

Обучение на Coursera

≈ 14.4 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
Accessing & Using MATLABЧтение
Accessing & Using LTspiceЧтение
Course MATLAB & LTspice ExamplesЧтение

Introduction to Peak Current-Mode Control

Introduction to Peak Current-Mode ControlВидеоPractice: Introduction to Peak Current-Mode ControlЗадание

Simple Model for Peak Current-Mode Controlled Converters

Simple Approximate ModelВидеоSmall-signal Model Based on Simple ApproximationВидеоDesign Example: Synchronous Buck POL ConverterВидеоPractice: Peak Current-mode Controlled POL RegulatorЗаданиеPI Compensator: Op-Amp ImplementationЧтение

Stabilization Using Artificial Ramp

Oscillation for D > 0.5ВидеоStabilization with Addition of an Artificial RampВидеоDesign Example Revisited: Inclusion of Artificial RampВидеоPractice: Slope CompensationЗадание

Graded Quiz: Peak Current-Mode Control, Simple Model

Peak Current-Mode Control, Simple ModelЗадание
02Peak Current-Mode Control: More Accurate Model11 материалов

More Accurate Modeling of Peak Current-Mode Control

More Accurate Average ModelВидеоPractice: More Accurate Large-Signal Averaged Model Задание

Average Circuit Modeling and Simulations

Average Spice CPM SubcircuitВидеоDesign Verification Using Average Circuit SimulationsВидеоPractice: Averaged Circuit SimulationЗадание

Small-Signal AC Modeling

Small-signal AC Equivalent Circuit ModelsВидеоTransfer Functions of CPM Controlled ConvertersВидеоAnalysis Example: CPM Controlled Boost ConverterВидеоComparison of Frequency Responses of Duty-cycle and Current-mode Controlled ConvertersВидеоPractice: More Accurate Small-Signal ModelЗадание

Graded Quiz: Peak Current-Mode Controlled Voltage Regulator

Peak Current-Mode Controlled Voltage RegulatorЗадание
03High-Frequency Effects in Peak Current-Mode Control12 материалов

Motivation for High-Frequency Modeling of Current-Mode Controlled Converters

Motivation for Modeling of High-Frequency EffectsВидео

Sampled-Data Modeling of Switching Converters

Pulse-Width Modulator as a SamplerВидеоOverview of Sampled-Data SystemsВидеоSampled-Data Modeling of Switching ConvertersВидеоPractice: Introduction to Sampled-Data ModelingЗадание

High-Frequency Modeling of Peak Current-Mode Controlled Converters

Introduction to Sampled-Data Modeling of Peak Current-Mode Controlled ConvertersВидеоDevelopment of Sampled-Data ModelВидеоFrequency Responses of Sampled-Data ModelsВидео1st Order ApproximationВидео2nd Order ApproximationВидеоSummary and ConclusionsВидео

Graded Quiz: High-Frequency Effects in Peak Current-Mode Controlled Converters

High-Frequency Effects in Peak Current-Mode Controlled ConvertersЗадание
04Average Current-Mode Control8 материалов

Average Current-Mode Control

Introduction to Average Current-Mode ControlВидеоTransfer Functions of Average Current-mode Controlled ConvertersВидеоPractice: Averaged Current-Mode Control, Transfer FunctionsЗадание

Modeling and Design of Current and Voltage Control Loops

Design Example: ACM Controlled Boost dc-dc ConverterВидеоDesign Verification by Average Circuit SimulationsВидеоDesign of the Voltage Control LoopВидеоDesign Example: ACM Controlled Boost dc Voltage RegulatorВидео

Graded Quiz: Average Current-Mode Control

Average Current-Mode ControlЗадание