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  • NR method and PQ decomposition method in power flow analysis (Part 1)
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  • Duration:42 minutes and 16 seconds
  • Date:2022/01/24
  • Uploader:Lemontree
Introduction

Introduction to the course "Power System Analysis" "Power System Analysis" is the professional backbone basic course in the electrical engineering discipline, and is the main guide and bridge for students to enter the power system major. In order to adapt to the development trend of modern education of "wide caliber, emphasis on practice, and research-oriented", this course takes "optimizing theoretical courses and strengthening practical links" as its core idea. This course optimizes and reorganizes the original four courses of power system steady state, fault, stability and protection to form a new theoretical course "Power System Analysis", so that the teaching content embodies "less refined and wider new" and adapts to modern higher education. Educational requirements.

Chapter 1 Overview of Power System
01-01 Overview of Power System (Electric Energy and Systems, Power Plants)
01-02 Overview of Power System (Power Network, Power and Complex Power, Power System Load)
Chapter 2 Steady State Model of Power System
02-01 Electric Power Line parameters and equivalent circuits
02-02 Transformer parameters and equivalent circuits
02-03 Standard system and equivalent circuits
Chapter 3 Power system power flow analysis
03-01 Simple power system power flow calculation
03-02 Power network equations and matrices and power Equation
03-03 Actual power flow equation and basic solution
03-04 NR method and PQ decomposition method in power flow analysis
Chapter 4 Steady-state operation and control of power system
04-01 Reactive power and voltage control
04-02 Active power and frequency control
04-03 Economic Operation and Control
Chapter 5 Introduction to Transient Analysis of Power Systems
Chapter 6 Mathematical Model of Synchronous Generator and Analysis of Three-phase Short Circuit at the Machine Terminal
06-01 Modeling of Synchronous Motor
06-02 Parker's Equation and Three-phase Short Circuit at the Machine Terminal Calculation
06-03 Three-phase short circuit analysis and short circuit current calculation
Chapter 7 Power system fault analysis and calculation
07-01 Symmetric component method and system model
07-02 Fault analysis and calculation
Chapter 8 Power system stability analysis and relay protection basics
08 -01 Basic concepts and mathematical models of stability
08-02 Static stability analysis
08-03 Transient stability analysis
08-04 Basics of power system protection
Chapter 9 Overall course materials
Chapter 10 Power system experiments

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