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所在平台: Udemy |
课程主页: https://www.udemy.com/course/simulink-for-power-electronics-simulations/
课程评论:没有评论
Coursera 课程《MATLAB/Simulink 在电力电子仿真中的应用》总结: 本课程旨在教授学员如何使用 MATLAB/Simulink 仿真各种电力电子设备,包括整流器、DC-to-DC 转换器和逆变器。课程不仅回顾了这些设备的工作原理,还提供了大量使用 MATLAB/Simulink 进行仿真的实例。每节课提供的仿真模型均可下载,方便学员跟随学习和自行修改。 课程内容主要分为以下几个部分: 1. **MATLAB/Simulink 在电力电子仿真中的入门:** * 复习电力电子领域常用半导体器件(二极管、功率 BJT、功率 MOSFET、IGBT、晶闸管)的理论。 * 介绍 Simulink 中用于表示这些器件的库。 * 讲解如何建模电压源、电流源和无源元件(电阻、电容、电感)。 * 演示如何将这些元件组合成模型,以及如何在模型中进行测量以保证仿真准确性。 2. **整流器在 MATLAB/Simulink 中的仿真:** * 回顾整流器的工作原理和拓扑结构。 * 演示单相和三相整流器的 Simulink 仿真方法。 3. **DC-to-DC 转换器在 MATLAB/Simulink 中的仿真:** * 回顾 DC-to-DC 转换器的工作原理和拓扑结构。 * 演示降压(Buck)、升压(Boost)和升降压(Buck/Boost)转换器的仿真。 4. **逆变器在 MATLAB/Simulink 中的仿真:** * 回顾逆变器的工作原理和拓扑结构。 * 演示单相和三相逆变器的仿真。 通过学习本课程,学员将能够熟练掌握使用 MATLAB/Simulink 设计和仿真电力电子设备,从而在电气工程和电力电子领域进一步发展职业生涯。课程提供模型下载,并支持提问互动,确保学习过程的顺畅。
This course is designed to allow you to simulate any power electronics device in MATLAB/Simulink, including rectifiers, dc-to-dc converters, and inverters. This course not only gives a review of the theory of how rectifiers, dc-to-dc converters, and inverters work, but also gives several examples on how to simulate these devices using MATLAB/Simulink. The MATLAB/Simulink models for the power electronics devices created during the lectures are available for download with each lecture. The course is divided into the following sections:1. Introduction to MATLAB/Simulink for Power Electronics: in section 2, we will begin by reviewing the theory behind the semiconductor devices that are used in power electronics, such as diodes, power BJTs, power MOSFETs, IGBTs, and Thyristors. We will then take a look at the libraries available in Simulink to represent these devices in our models. After that, we will take a look at how we can model voltage sources, current sources, and passive components (resistors, capacitors, and inductors), as well as how we can put them together in a model using Simulink and how we can take measurements in the model to ensure proper simulation. 2. Rectifier Simulations in MATLAB/Simulink: we will begin section 3 by reviewing the theory behind the operation and topologies of power electronics rectifiers. We will then see how we can simulate both single-phase and three-phase rectifiers using Simulink.3. DC-to-DC Converter Simulations in MATLAB/Simulink: we will begin section 4 by reviewing the theory behind the operation and topologies of power electronics dc-to-dc converters. We will then see how we can simulate buck, boost, and buck/boost converters.4. Inverter Simulations in MATLAB/Simulink: we will begin section 5 by reviewing the theory behind the operation and topologies of inverters. We will then see how we can simulate single-phase and three-phase inverters.As mentioned above, in each section, we will go over several models to illustrate how we can design and simulate power electronics devices in MATLAB/Simulink. The models are also available for download so that you can follow along, as well as use these models and modify them to create your own designs.By learning how to simulate power electronics devices in MATLAB/Simulink, you will be able to further your career in electrical engineering and power electronics.Remember that Udemy offers a 30-day money-back guarantee. I am also always available for questions while you go through the course to ensure everything is clear.See you in the course!