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三相电压源型并网变换器的非线性行为研究

摘要第4-6页
Abstract第6-7页
Publications第8-10页
Acknowledgements第10-13页
Contents第13-16页
List of Figures第16-23页
List of Tables第23-25页
Chapter 1 Introduction第25-43页
    1.1 Motivation第25-33页
        1.1.1 APF第29-30页
        1.1.2 UPFC第30-31页
        1.1.3 SMES第31页
        1.1.4 Four-Quadrant AC Motor Drive System第31-32页
        1.1.5 Renewable Energy for Power Generation第32-33页
    1.2 Literature Review第33-40页
        1.2.1 Three-Phase Boost Rectifier第33-38页
        1.2.2 Nonlinear Analysis第38-40页
    1.3 Objectives of the Thesis第40页
    1.4 Organization of the Thesis第40-43页
Chapter 2 Overview of Three-Phase BoostRectifiers第43-61页
    2.1 Stable Operation of Three-phase Boost Rectifier第44-48页
    2.2 Mathematical Model第48-54页
        2.2.1 Model of Boost Rectifier in Three-Phase System第49-50页
        2.2.2 Model of Boost Rectifier in Stationary Coordinates(α-β)第50-52页
        2.2.3 Model of Boost Rectifier in Synchronous Rotating Coordinates (d-q)第52-54页
    2.3 Control Design第54-58页
        2.3.1 Inner-loop Design第55-57页
        2.3.2 Outer-loop Design第57-58页
    2.4 Operation Limitation第58-59页
    2.5 Summary第59-61页
Chapter 3 Irreversible Instability ofThree-phase Boost Rectifier第61-89页
    3.1 A Glimpse at the Instability第63-68页
    3.2 Analysis of the Instability第68-82页
        3.2.1 System Operating Principle第68-70页
        3.2.2 Transient to Instability第70-76页
        3.2.3 Unstable Operation第76-81页
        3.2.4 Analysis of Instability第81-82页
        3.2.5 Derivation of Stability Boundary第82页
    3.3 Simulation Verification第82-83页
    3.4 Experimental Verification第83-86页
    3.5 Summary第86-89页
Chapter 4 Low-Frequency Instability ofThree-phase Boost Rectifier第89-109页
    4.1 A Glimpse at Low-Frequency Instability第90-93页
    4.2 Analysis of the Grid-Connected System第93-99页
        4.2.1 Steady-State Point第97页
        4.2.2 The Jacobian第97-99页
    4.3 Simulation of the Low-Frequency Instability Using an Averaged Model第99页
    4.4 Design-Oriented Analysis of Low-Frequency Instability第99-106页
        4.4.1 Grid Impedance第101页
        4.4.2 Proportional coefficient of Voltage Loop第101-103页
        4.4.3 DC Link Capacitor第103页
        4.4.4 Load Resistance第103-106页
        4.4.5 Summary第106页
    4.5 Experimental Observation第106-107页
    4.6 Summary第107-109页
Chapter 5 Destabilization of Grid-connectedInteracting Converters..ct第109-135页
    5.1 A Glimpse at the Instability第111-113页
    5.2 Analysis第113-124页
        5.2.1 Basic Model:The Standalone Converter第114-119页
        5.2.2 Analysis of the Interacting Converters in the Absence of Trans-mission Line Impedance第119-122页
        5.2.3 Analysis of the Interacting Converters in the Presence of Trans-mission Line Impedance第122-124页
    5.3 Design-oriented Results and Verification第124-128页
    5.4 Experimental Verification第128-133页
    5.5 Summary第133-135页
Chapter 6 Conclusions and Suggestions forFuture Research第135-141页
    6.1 Contributions of the Thesis第135-138页
    6.2 Some Considerations for Future Research第138-141页
        6.2.1 A special Low-frequency at 150 Hz in VSC第138-139页
        6.2.2 Changing of Converters' Load第139页
        6.2.3 Effects of Grid Harmonics第139页
        6.2.4 Unbalanced Grid for Parallel Converters第139-141页
Bibliography第141-158页
中文简述第158-169页

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