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    1. Naturvetenskap och teknik
    2. Teknik och industri
    3. Energiteknik

    Integration of Large Scale Wind Energy with Electrical Power Systems in China

    AvZongxiang Lu,Shuangxi Zhou

    Inbunden, Engelska, 2018

    1 984 kr

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    Beskrivning

    An in-depth examination of large scale wind projects and electricity production in China Presents the challenges of electrical power system planning, design, operation and control carried out by large scale wind power, from the Chinese perspectiveFocuses on the integration issue of large scale wind power to the bulk power system, probing the interaction between wind power and bulk power systemsWind power development is a burgeoning area of study in developing countries, with much interest in offshore wind farms and several big projects under developmentEnglish translation of the Chinese language original which won the "Fourth China Outstanding Publication Award nomination" in March 2013

    Produktinformation

    • Utgivningsdatum:2018-06-05
    • Mått:175 x 252 x 33 mm
    • Vikt:1 270 g
    • Format:Inbunden
    • Språk:Engelska
    • Antal sidor:488
    • Förlag:John Wiley & Sons Inc
    • ISBN:9781118910009

    Utforska kategorier

    • Energiteknik inom Naturvetenskap och teknik

    Mer om författaren

    Zongxiang Lu, Tsinghua University, China Shuangxi Zhou, Tsinghua University, China

    Innehållsförteckning

    • 1 Overview 11.1 Wind Energy andWind Energy Resources 11.2 Characteristics ofWind Power Generation 41.3 Present Situation and Development ofWind Power Generation 51.4 Wind Power Conversion System and Technical Route 81.5 WF-Included Electrical Power System 91.6 Outline of the Book 12References 132 Wind Power Generation and Wind Power Generation System 142.1 Wind Power Generation System andWFs 142.2 Wind Turbine 162.3 Wind Turbine Generator System 262.4 Power Electronic Technology inWind Power Conversion System 41References 493 Operation of Grid-Connected WTGS 513.1 Wind Turbine Grid Connection 513.2 Power Regulation ofWind Turbines 573.3 Wind Energy Converters and Basic Control Methods 623.4 Voltage/Reactive Power Control Characteristics of Three MainstreamWind Turbines 65References 724 Connection of WFs to Power Systems 734.1 Requirements of the Power System for Grid Connection ofWFs 734.2 Connection ofWFs to Power Distribution Grids or Transmission Grids 754.3 Direct Connection to AC grids 764.4 WFs Interconnection via Conventional HVDC (PCC—HVDC) 814.5 WFs Interconnection via VSC-HVDC 844.6 Contrast ofWF Integration Schemes 884.7 Integration of Large-ScaleWFs into the Grid 894.8 Determination of MaximumWind Power Capacity Allowed to be Integrated into the Grid 90References 985 WF Electrical Systems 1005.1 Power Collection Systems 1005.2 WF Grounding Systems 1045.3 WF Lightning Protection 1055.4 WF Electrical Protection 1095.5 WF Reactive Power Compensation 1145.6 WF Energy Storage Systems 117References 1206 OWFs 1226.1 OWF and Its Characteristics 1226.2 OWF Electrical System 1236.3 Redundancy Design of Collection System 1296.4 OWF Transmission System 1296.5 A New Type of OffshoreWind Energy Conversion System 1476.6 OWF Electrical System Optimization Design 1496.7 Examples of Typical OWF 162References 1697 Analysis of Power Systems Containing Wind Power 1717.1 Overview 1717.2 MathematicalModels ofWind Power Generation System 1727.3 Power Flow Analysis of Power System ContainingWind Power 1927.4 Short-Circuit Analysis of Power Systems ContainingWind Power 2027.5 Voltage Stability Analysis of Power System ContainingWind Power 2117.6 Transient Stability Analysis of Power Systems ContainingWind Power 2237.7 Small Signal Stability Analysis on Power System ContainingWind Power 2327.8 Frequency Stability Analysis of Power System ContainingWind Turbines 245References 2588 WF Power Quality and Its Improvements 2638.1 Overview 2638.2 Power Quality and Its Characteristics 2658.3 Power Quality Problems ofWFs Associated with the Grid 2678.4 Frequency Quality and Frequency Regulation 2688.5 Voltage Quality and Voltage Regulation 2708.6 WF Voltage Flicker 2758.7 Harmonics and Interharmonics of theWF 2838.8 Measures to Improve Power Quality ofWFs 290References 2949 Wind Velocity and Generated Power Forecasts in WF 2959.1 Overview 2959.2 Variability ofWind Power 2969.3 Wind Power Forecast Model and Method 3019.4 Wind Velocity Forecast 3079.5 Generated Power Forecast inWF 3149.6 Accuracy ofWind Power Forecast 3239.7 Application and Challenge ofWind Power Forecast 329References 33210 WF Control and Protection Technologies 33410.1 Overview 33410.2 Active Power and Frequency Control 34310.3 Reactive Power and Voltage Regulation 34510.4 Fault Ride-Through (FRT) or Low/High-Voltage Ride-Through (L/HVRT) ofWTGS 35010.5 AGC of aWind Power Contained Power System 36310.6 WF Monitoring and Control 36410.7 Control ofWF Energy Storage System 372References 37811 Operation and Dispatch of a Power System Containing Wind Power 38011.1 Overview 38011.2 General Requirements forWF Operation 38211.3 Power Balance and System Reserve Capacity 38611.4 Optimal Dispatch of Power Systems ContainingWind Power 39511.5 Wind Power Generation and Power Market 41311.6 Main Technology ofWFs to be Conventional Power Plants 429References 43812 The Evaluation Technology for AnWind Power Integrated Power System 44112.1 Reliability Evaluation ofWind Power Integrated Power System 44112.2 Wind Power Generation CC 44812.3 Wind Power Value Analysis 45312.4 Analysis of Maximum Penetrating Capacity ofWind Power 461References 469Index 471