Автор: K.N. Shubhanga
Издательство: Pearson
Год: 2018
Страниц: 809
Язык: английский
Формат: pdf (true)
Размер: 25.79 MB
Power System Analysis: A Dynamic Perspective a text designed to serve as a bridge between the undergraduate course on power systems and the complex modelling and computational tools used in the dynamic analysis of practical power systems. With extensive teaching and research experience in the field, the author presents fundamental and advanced concepts using rigorous mathematical analysis and extensive time-domain simulation results. The text also includes numerous plots with clear explanation for easy understanding.
Although electrical power systems have been in existence for more than a century, challenges in this fi eld abound. While the structure of a bulk power system has remained more or less unchanged, the deployment of emerging technologies like wind and solar energy systems, voltage-source (power electronic) converters, and wide-area measurement systems have had a signifi cant impact on the operation and control of power systems. An abiding concern of a power system engineer has been the stabilityof the electrical grid, that is, its ability to withstand a disturbance and return to an acceptable equilibrium. Although this is stated quite simply, complex modelling, analytical and computational tools are required to analyse, quantify, and improve stability margins.
Contents:
Foreword xvii
Preface xix
About the Author xxiii
Chapter 1 Introduction to Power System Analysis 1
Chapter 2 Basics of Power Systems 22
Chapter 3 Park-Based Transformations 113
Chapter 4 Synchronous Machine Modelling Using Primitive Parameters 143
Chapter 5 The Standard Parameters of Synchronous Machine 199
Chapter 6 Numerical Integration of ODEs 288
Chapter 7 Numerical Iterative Methods 334
Chapter 8 Fault Analysis of Power Systems 350
Chapter 9 Introduction to Sub-synchronous Resonance 419
Chapter 10 SSR Analysis of the IEEE First Benchmark Model 437
Chapter 11 Controllers for Synchronous Generator 476
Chapter 12 Power System Angle Stability 506
Chapter 13 Modal Analysis of Power Systems with Interconnected Generators 557
Chapter 14 Transient Stability Analysis of Power Systems with Interconnected Generators 632
Chapter 15 Dynamic Modelling of Some Electrical Machines and their Power-fl ow Analysis 702
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