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所在平台: Coursera |
课程主页: https://www.coursera.org/learn/modeling-and-control-of-single-phase-rectifiers-and-inverters
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课程名称:单相整流器和逆变器的建模与控制 概述:本课程也可以作为学分学习,课程代码为 ECEA 5709,属于科罗拉多大学博尔德分校电气工程硕士学位的一部分。本课程是电力电子建模与控制专业化的第5门课程,集中于与电网连接的电力电子设备的建模与控制。完成本课程后,您将能够理解、分析、建模以及设计低谐波整流器和逆变器,以将直流负载或直流电源(如光伏阵列)连接到单相交流电力网。 建议完成科罗拉多大学博尔德分校的电力电子专业化课程,以及课程 #1(平均开关建模与仿真)和课程 #4(电流模式控制)后再注册本课程。 相关课程包括: - 电力电子导论 (ECEA 5700) - 转换电路 (ECEA 5701) - 转换控制 (ECEA 5702) - 平均开关建模与仿真 (ECEA 5705) - 电流模式控制 (ECEA 5708) 完成本课程后,您将能够: - 理解低谐波、高功率因数整流器和逆变器的操作原理 - 对功率因数校正(PFC)整流器进行电流整形和电压控制回路的建模与设计 - 对单相直流-交流逆变器进行控制回路的建模与设计 - 设计与单相交流电网连接的光伏电力系统 - 使用计算机辅助工具和仿真来验证整流器和逆变器的设计 教学大纲: - 名称:电网连接的电力电子 描述:功率因数和谐波的介绍,低谐波功率因数校正(PFC)整流器的操作原理和建模。 - 名称:功率因数校正整流器的控制 描述:低谐波整流器的建模,单相系统中需要储能的原因,以及电流和电压控制回路的设计。 - 名称:单相逆变器的建模与控制 描述:光伏(PV)系统的介绍,单相光伏逆变器的建模与控制。
Name:Grid-Tied Power Electronics
Description:Introduction to power factor and harmonics, operating principles, and modeling of low-harmonic power factor correction (PFC) rectifiers.
Name:Control of Power Factor Correction Rectifiers
Description:Modeling of low-harmonic rectifiers, the need for energy storage in single-phase systems, and design of current and voltage control loops.
Name:Modeling and Control of Single-Phase Inverters
Description:Introduction to photovoltaic (PV) systems, modeling and control of single-phase PV inverters.
This course can also be taken for academic credit as ECEA 5709, part of CU Boulder’s Master of Science in Electrical Engineering degree. This is Course #5 in the Modeling and Control of Power Electronics Specialization. The course is focused on modeling and control of grid-tied power electronics. Upon completion of the course, you will be able to understand, analyze, model, and design low-harmonic rectifiers and inverters interfacing dc loads or dc power sources, such as photovoltaic arrays, to the single-phase ac power grid. We strongly recommend students complete the CU Boulder Power Electronics Specialization as well as Courses #1 (Averaged-Switch Modeling and Simulation) and #4 (Current-Mode Control) 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) ● Current-Mode Control (ECEA 5708) After completing this course, you will be able to: ● Understand the operating principles of low-harmonic, high power factor rectifier and inverters ● Model and design current shaping and voltage control loops in power factor correction (PFC) rectifiers ● Model and design control loops in single-phase dc-to-ac inverters ● Design photovoltaic power systems tied to the single-phase ac power grid ● Use computer-aided tools and simulations to verify the design of rectifiers and inverters