Simulating Power Electronic Circuits using Python

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课程主页: https://www.udemy.com/course/simulating-power-electronic-circuits-using-python/

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课程简介

**课程名称:** 使用Python模拟电力电子电路 **课程概述:** 本课程面向电气工程专业的学生和实践中的电气技术人员,旨在帮助他们掌握电力电子电路的仿真方法,特别是针对非线性电路。课程将介绍仿真过程,并提供基础理论讲座,帮助学习者理解仿真在学习电力转换器工作原理中的作用。 **课程特点:** * **免费开源软件:** 课程全程使用免费开源软件,包括Python编程及Python Power Electronics电路仿真器。所有软件均兼容Windows、Linux和Mac OS操作系统,学习者可根据偏好选择。 * **Python编程入门:** 提供Python编程基础教程,帮助学习者编写控制代码。 * **深度而非广度:** 课程不追求涵盖大量电力转换器,而是侧重于深度讲解。 * **理论与实践结合:** 通过代码演示,从零开始构建仿真模型,并结合理论讲解与仿真结果分析,深入理解电路工作原理。 * **物理概念驱动:** 课程侧重于运用基础物理概念解释电力转换器电路,而非深入复杂的数学推导。 **先修要求:** * **基础电气知识:** 掌握基本电路定律,如基尔霍夫电压律、基尔霍夫电流律和欧姆定律(通常为电气工程一年级内容)。 * **基础编程知识:** 具备使用Python或其他高级编程语言(如C、C++、Java)进行编程的经验,但不要求精通。此课程不适合作为完全零基础的编程入门。 * **无需电力电子或模拟电子先修知识。**

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For a student of electrical engineering or for a practicing electrical technician, getting started with simulating electrical circuits can be challenging. Even more so in the case of power electronics where circuits are non-linear. This course introduces the process of simulation and also provides basic theory lectures to help you understand how simulations can be used to learn how power converters work.This course uses only free and open source software. The course will have lectures to show you how to download and install each software. All software are compatible with Windows, Linux and Mac OS and you can follow this course whatever operating system you prefer to use. The course also has a basic tutorial on Python programming to help you with writing control code for electrical circuits. The course uses the free and open source circuit simulator Python Power Electronics. You can use other simulators if you are already using them. However, all examples in this course will use Python Power Electronics as I would like all students registered for the course to be able to access a circuit simulator and not all simulators are free to use.This course is not a comprehensive course on power electronics. I will not be covering a vast number of power converters. Instead, this course focuses on depth. The lectures will have code along sessions where I will be building simulations from scratch and will be switching back and forth between theory presentations and simulation results to understand how circuits work. The course will not be heavily mathematical but on the contrary will use fundamental concepts of Physics to understand how power converter circuits.In order to successfully complete this course, a student is required to have some basic electrical knowledge. This implies basic network laws - Kirchoff's Voltage Law, Kirchoff's Current Law, Ohm's Law. These would be taught in first year of electrical engineering. Other than that, you do not need to have prior knowledge of power electronics or analog electronics. A student will also be required to have some basic knowledge of programming. This course uses Python. However, if a student has used any other high level language such as C, C++, Java etc, that would do as well. Expert knowledge of programming is not necessary. This course however, should not be a student's very first time coding.

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