 Introduction  Optimal power flow model  Solution of optimal power flow by linear programming
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 Introduction-Why we need state estimation in power system  Problem Formulation  Case Study  Advanced topics:  Hybrid Power System State Estimation (with SCADA and PMU)  Placement of Meters  Power System Sensor Network
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 Introduction  Phasor Measurement Unit (PMU)  Control based on WAMS  state of arts and development trend
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 Introduction  Concept of Reactive power in power system  Control and management of reactive and voltage  Difference between active power & frequency regulation  Importance of voltage control  Measures for voltage control  Rules of reactive compensation and voltage control  Excitation control of generator
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 Introduction  Mathematical model  Generator model  Load model  Prime mover model  Governor model  Tie-line model  Automatic Generation Control (AGC:自动发电控制)
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 Introduction  Solution of Unit Commitment  Solution of Unit Commitment with Dynamic Programming
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 Introduction  Problem formulation  Characteristics of prime mover-generator  Model of economic dispatch and its solution  Economic dispatch considering line loss  Gradient method  Newton method  Dynamic programming  Co-dispatch of thermal and hydro plants
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 Development of Power Grid: state of art  Induction to Power System Operation  Operation status and constraints of power network  Power system dispatch  Power system model
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电子科技大学:《电力系统运行与控制 Power System Operation and Control》课程教学资源(课件讲稿)Lecture 01 Introduction of the course(黄琦)
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9.1 电力系统稳定性概述 9.2 电力系统的静态稳定 9.3 电力系统的暂态稳定 9.4 提高电力系统稳定性的措施
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