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End User License Agreement
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End User License Agreement
by Yasunori Mitani, Masayuki Watanabe, Hassan Bevrani
Power System Monitoring and Control
Cover
Title Page
Copyright
Dedication
Preface
Acknowledgments
Chapter 1: An Introduction on Power System Monitoring
1.1 Synchronized Phasor Measurement
1.2 Power System Monitoring and Control with Wide-Area Measurements
1.3 ICT Architecture Used in Wide-Area Power System Monitoring and Control
1.4 Summary
References
Chapter 2: Oscillation Dynamics Analysis Based on Phasor Measurements
2.1 Oscillation Characteristics in Power Systems
2.2 An Overview of Oscillation Monitoring Using Phasor Measurements
2.3 Wams-Based Interarea Mode Identification
2.4 Low-Frequency Oscillation Dynamics
2.5 Summary
References
Chapter 3: Small-Signal Stability Assessment
3.1 Power System Small-Signal Stability
3.2 Oscillation Model Identification Using Phasor Measurements
3.3 Small-Signal Stability Assessment of Wide-Area Power System
3.4 Summary
References
Chapter 4: Graphical Tools for Stability and Security Assessment
4.1 Importance of Graphical Tools in WAMS
4.2 Angle–Voltage Deviation Graph
4.3 Simulation Results
4.4 Voltage–Frequency Deviation Graph
4.5 Frequency–Angle Deviation Graph [8]
4.6 Electromechanical Wave Propagation Graph
4.7 Summary
References
Chapter 5: Power System Control: Fundamentals and New Perspectives
5.1 Power System Stability and Control [5]
5.2 Angle and Voltage Control
5.3 Frequency Control [10,11]
5.4 Supervisory Control and Data Acquisition
5.5 Challenges, Opportunities, and New Perspectives
5.6 Summary
References
Chapter 6: Wide-Area Measurement-Based Power System Control Design
6.1 Measurement-Based Controller Design
6.2 Controller Tuning Using a Vibration Model
6.3 Wide-Area Measurement-Based Controller Design
6.4 Summary
References
Chapter 7: Coordinated Dynamic Stability and Voltage Regulation
7.1 Need for AVR–PSS Coordination
7.2 A Survey on Recent Achievements
7.3 A Robust Simultaneous AVR–PSS Synthesis Approach
7.4 A Wide-Area Measurement-Based Coordination Approach
7.5 Intelligent AVR and PSS Coordination Design
7.6 Summary
References
Chapter 8: Wide-Area Measurement-Based Emergency Control
8.1 Conventional Load Shedding and New Challenges
8.2 Need for Monitoring Both Voltage and Frequency
8.3 Simultaneous Voltage and Frequency-Based LS
8.4 Wave Propagation-Based Emergency Control
8.5 Summary
References
Chapter 9: Microgrid Control: Concepts and Classification
9.1 Microgrids
9.2 Microgrid Control [1]
9.3 Local Controls
9.4 Secondary Controls
9.5 Global Controls
9.6 Central/Emergency Controls
9.7 Summary
References
Chapter 10: Microgrid Control: Synthesis Examples
10.1 Local Control Synthesis
10.2 Secondary Control Synthesis
10.3 Global Control Synthesis
10.4 Emergency Control Synthesis
10.5 Summary
References
Appendix A: New York/New England 16-Machine 68-Bus System Case Study
Appendix B: Nine-Bus Power System Case Study
Appendix C: Four-Order Dynamical Power System Model and Parameters of the Four-Machine Infinite-Bus System
Index
End User License Agreement
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