This book systematically introduces the flexible power technology applied in various links of power system by power electronics technology. In the field of power generation, it mainly introduces the excitation system based on thyristor regulation, the utilization of distributed power sources and grid-connected power electronic conversion and regulation devices, variable speed pumped storage units, etc.; in the field of power transmission, it mainly introduces DC transmission technology, parallel and series AC transmission control technology based on power electronics technology; in the distribution link, it introduces the application of power electronics technology in power quality regulation and control; in the field of electricity consumption, it introduces the common power electronic conversion equipment for power utilization, and focuses on analyzing the impact of the power load power electronics trend on the stability and power quality of the power system. The purpose of this book is to promote the popularization of the relevant knowledge of flexible power technology theory and application among power engineering technicians, managers and students majoring in power engineering. This book can be used as a reference book for power engineering technicians, managers and students majoring in power engineering to study, research and engineering application in related fields such as the application of power electronics technology in power systems. Preface Chapter 1 Flexible Power System Technology 1.1 The Composition and Characteristics of Traditional Power Systems 1.2 The Necessity of Power System Flexibility 1.3 The Concept, Classification and Application Examples of Flexible Power Technology 1.4 Basic Characteristics and Development of Power Electronic Devices 1.5 The Current Status and Development of Energy Storage Technology 1.6 The Development and Application of Information Processing and Control Technology References Chapter 2 Power Conversion Circuit and Control 2.1 AC-DC Conversion Circuit 2.2 DC-DC Conversion Circuit 2.3 DC-AC Conversion Circuit 2.4 AC-AC Conversion Circuit References Chapter 3 Power Electronic Technology in Power Generation 3.1 Application of Rectification Excitation in Modern Synchronous Generators 3.2 Power Electronic Technology in Wind Power Generation 3.3 Variable Speed Pumped Storage Power Generation Technology 3.4 Power Electronic Technology in Solar Power Generation 3.5 Other Related Power Electronic Technology in Power Generation References Chapter 4 DC Transmission Technology 4.1 Overview 4.2 Rectifier Working Principle 4.3 Inverter Working Principle 4.4 New Developments in DC Transmission Conversion Technology References Chapter 5 Flexible Parallel Compensation for Transmission Systems 5.1 Overview 5.2 Impedance-controlled Parallel Compensation 5.3 Current-controlled Parallel Compensation 5.4 Energy-controlled Parallel Compensation References Chapter 6 Flexible Series and Hybrid Compensation for Transmission Systems 6.1 Overview 6.2 Impedance-controlled Series Compensation 6.3 Voltage-controlled Series Compensation 6.4 Series-parallel Hybrid Compensation References Chapter 7 Power Electronics Technology and Power Quality Control 7.1 Overview 7.2 Power Harmonic Suppression Technology 7.3 Voltage Fluctuation and Flicker Suppression Technology 7.4 Voltage Sag and Short Interruption Suppression Technology 7.5 Selection of Power Quality Control Schemes and Power Industrial Parks References Chapter 8 Flexible Power Consumption and Load Characteristics 8.1 Overview 8.2 Flexibility of Typical Power Loads 8.3 Analysis of Electromagnetic Characteristics of Power Electronics Loads 8.4 Analysis of Electromechanical Characteristics of Power Electronics Loads References
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