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Subsynchronous Resonance in Power Systems [Paperback]

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  • Category: Books (Technology & Engineering)
  • Author:  Anderson, Paul M., Agrawal, Basant L., Van Ness, J. E.
  • Author:  Anderson, Paul M., Agrawal, Basant L., Van Ness, J. E.
  • ISBN-10:  0780353501
  • ISBN-10:  0780353501
  • ISBN-13:  9780780353503
  • ISBN-13:  9780780353503
  • Publisher:  Wiley-IEEE Press
  • Publisher:  Wiley-IEEE Press
  • Pages:  288
  • Pages:  288
  • Binding:  Paperback
  • Binding:  Paperback
  • Pub Date:  01-May-1999
  • Pub Date:  01-May-1999
  • SKU:  0780353501-11-MPOD
  • SKU:  0780353501-11-MPOD
  • Item ID: 100893415
  • Seller: ShopSpell
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  • Delivery by: Apr 10 to Apr 12
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Mathematical calculations for subsynchronous system modeling

Subsynchronous Resonance in Power Systems provides in-depth guidance toward the parameters, modeling, and analysis of this complex subclass of power systems. Emphasizing field testing to determine the data required, this book facilitates thorough and efficient oscillation and damping modeling using eigenvalues of a system's linear model. Expert discussion provides step-by-step instruction for generator, network, and turbine-generator shaft models, followed by detailed tutorials for model testing and analysis based on IEEE, CORPALS, and SSR eigenvalue analysis. Comprehensive in scope and practical in focus, this book is an invaluable resource for anyone working with frequencies below 60 Hz.

Preface.

PART 1: INTRODUCTION.

Chapter 1: Introduction.

1.1 Definition of SSR.

1.2 Power System Modeling.

1.3 Introduction to SSR.

1.3.1 Types of SSR Interactions.

1.3.2 Analytical Tools.

1.4 Eigenvalue Analysis.

1.4.1 Advantages of Eigenvalue Computation.

1.4.2 Disadvantages of Eigenvalue Calculation.

1.5 Conclusions.

1.6 Purpose, Scope, and Assumptions.

1.7 Guidelines for Using This Book.

1.8 SSR References.

1.8.1 General References.

1.8.2 SSR References.

1.8.3 Eigenvalue/Eigenvector Analysis References.

1.9 References for Chapter 1.

PART 2: SYSTEM MODELING.

Chapter 2: The Generator Model.

2.1 The Synchronous Machine Structure.

2.2 The Machine Circuit Inductances.