Converter Circuits

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University of Colorado Boulder

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This course can also be taken for academic credit as ECEA 5701, part of CU Boulder’s Master of Science in Electrical Engineering degree. This course introduces more advanced concepts of switched-mode converter circuits. Realization of the power semiconductors in inverters or in converters having bidirectional power flow is explained. Power diodes, power MOSFETs, and IGBTs are explained, along with the origins of their switching times. Equivalent circuit models are refined to include the effects of switching loss. The discontinuous conduction mode is described and analyzed. A number of well-known converter circuit topologies are explored, including those with transformer isolation. The homework assignments include a boost converter and an H-bridge inverter used in a grid-interfaced solar inverter system, as well as transformer-isolated forward and flyback converters. After completing this course, you will: ● Understand how to implement the power semiconductor devices in a switching converter ● Understand the origins of the discontinuous conduction mode and be able to solve converters operating in DCM ● Understand the basic dc-dc converter and dc-ac inverter circuits ● Understand how to implement transformer isolation in a dc-dc converter, including the popular forward and flyback converter topologies Completion of the first course Introduction to Power Electronics is the assumed prerequisite for this course.

转换器电路:该课程也可以作为ECEA 5701的学分,该课程是CU Boulder的电气工程理学硕士学位的一部分。 本课程介绍开关模式转换器电路的更多高级概念。说明了逆变器或具有双向功率流的转换器中功率半导体的实现。解释了功率二极管,功率MOSFET和IGBT及其开关时间的由来。完善了等效电路模型以包括开关损耗的影响。描述和分析了不连续传导模式。探索了许多众所周知的转换器电路拓扑,包括具有变压器隔离的拓扑。 家庭作业包括在并网太阳能逆变器系统中使用的升压转换器和H桥逆变器,以及与变压器隔离的正激和反激转换器。 完成本课程后,您将: ●了解如何在开关转换器中实现功率半导体器件 ●了解不连续传导模式的起源,并能够解决在DCM中运行的转换器 ●了解基本的DC-DC转换器和DC-AC逆变器电路 ●了解如何在DC-DC转换器中实现变压器隔离,包括流行的正激和反激转换器拓扑 完成第一门课程功率电子学概论是本课程的前提。

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