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Frequency variations in power systems modeling, state estimation and control /

"The question that originates this work was how to define the frequency variations at load buses when simulating the transient of a power system modeled with the conventional assumption that the frequency is constant when describing the behaviour of loads and transmission lines. This apparently...

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Detalles Bibliográficos
Clasificación:Libro Electrónico
Autores principales: Milano, Federico (Autor), Ortega Manjavacas, Álvaro, 1989- (Autor)
Formato: eBook
Idioma:Inglés
Publicado: Hoboken, NJ : Wiley-IEEE Press, 2020.
Colección:Wiley - IEEE Ser.
Temas:
Acceso en línea:Texto completo
Tabla de Contenidos:
  • Cover
  • Title Page
  • Copyright
  • Dedication
  • Contents
  • List of Figures
  • List of Tables
  • Preface
  • Acknowledgments
  • Acronyms and Abbreviations
  • Notation
  • Part I Background
  • 1 Frequency in Power Systems
  • 1.1 Conventional Definitions
  • 1.2 Alternating Current
  • 1.3 Reference Frequency
  • 1.4 Transforms
  • 2 Power System Model
  • 2.1 Time Scales
  • 2.2 Quasi-Steady-State Model
  • 2.3 Differential Algebraic Equations
  • 2.4 Conventional Devices
  • 3 Dynamic State Estimation
  • 3.1 Basic Concepts
  • 3.2 Introducing Dynamics
  • 3.3 Estimation of Bus Frequencies
  • 4 Frequency Control
  • 4.1 Introduction
  • 4.2 Power Balancing
  • 4.3 Power Oscillation Damping
  • 4.4 Nonsynchronous Devices
  • Part II Theory
  • 5 Frequency Divider Formula
  • 5.1 Rationale
  • 5.2 Derivation
  • 5.3 Equivalent Networks
  • 5.4 Inclusion of Measurements
  • 5.5 Frequency Participation Factors
  • 6 Frequency Makers and Frequency Takers
  • 6.1 Introduction
  • 6.2 Derivation
  • 6.3 Taxonomy
  • 6.4 Examples
  • Part III Applications
  • 7 Frequency Control
  • 7.1 Impact of Frequency Signals
  • 7.2 Synthesis of Frequency Signals
  • 8 Dynamic State Estimation
  • 8.1 Machine Rotor Speeds
  • 8.2 Center of Inertia
  • 8.3 Applications of the RoCoP
  • 9 Power System Model
  • 9.1 Introduction
  • 9.2 Frequency Dependent Model
  • 9.3 Example
  • 10 Frequency in Power Systems
  • 10.1 Definitions
  • 10.2 Final Remarks
  • Appendices
  • Appendix A Data
  • A.1 Three-Bus System
  • A.2 WSCC System
  • A.3 IEEE 14-Bus System
  • A.4 New England System
  • Appendix B Irish Transmission System
  • Bibliography
  • Index
  • EULA