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所在平台: Coursera |
课程主页: https://www.coursera.org/learn/industrial-power-system-analysis-and-stability
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课程名称:电力系统建模与故障分析 概述:本课程旨在详细描述电力系统组件的建模及分析在电力系统网络中发生的各种类型的对称和不对称故障。 学习目标: • 综合理解电网系统的结构和性质,电网运行中面临的问题及电网互联的类型。 • 绘制三相电力系统的单线图表示。 课程大纲: 1. **电力系统的结构与性质** - 描述电网系统的基本结构、优缺点及相关挑战,电网互联,各种电力系统研究的需要以及电力系统分析的重要性。 2. **基于单位制和电力系统组件的建模** - 探讨基于单位制的计算,电力系统各组成部分的建模,包括等效电路的表示及其在阻抗/反应图中的表示。 3. **对称/平衡故障分析/短路研究** - 深入了解电力系统中出现的各种故障,探讨对称分量概念及对称故障的分析方法。 4. **不对称/不平衡/非对称故障分析** - 理解各种类型的不对称故障,深入分析不对称故障及其与序列网络的互连。 通过本课程的学习,您将能够有效地理解和分析电力系统的结构及其故障,掌握电力系统组件的建模技巧。
Name:Structure and Nature of Power System
Description:Let’s begin this course by understanding the basic structure of electrical grid system, merits, demerits and challenges involved, grid interconnections, various studies carried out in a power system and the need for power system analysis.
Name:Per Unit System and Modeling of Power System Components
Description:This module imparts knowledge on per unit system calculations, modelling of the various power system components in the form of equivalent circuits and their representation in impedance / reactance diagram.
Name:Symmetrical / Balanced Fault Analysis / Short Circuit Studies
Description:This module aims to explore the various types of faults occurring in a power system, the concept of symmetrical components and analysis of symmetrical faults
Name:Unsymmetrical / Unbalanced / Asymmetrical Fault Analysis
Description:This module helps to understand the various types of unsymmetrical faults and details the analysis of unsymmetrical faults with interconnection of sequence networks.
This course is designed to provide a detailed description of modeling of power system components and analyze of various types of symmetrical and unsymmetrical faults occurring in a power system network. By the end of this course, you will be able to: • Develop a comprehensive understanding of the structure and nature of an electrical grid system, issues faced in grid operations and types of grid interconnections. (BL2) • Draw the single line diagram representation of a three-phase power system