Transient Analysis of Power Systems: A Practical Approach 1st edition by Juan A. Martinez-Velasco – Ebook PDF Instant Download/DeliveryISBN: 1119480493, 9781119480495
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Product details:
ISBN-10 : 1119480493
ISBN-13 : 9781119480495
Author : Juan A. Martinez-Velasco
A hands-on introduction to advanced applications of power system transients with practical examples
Transient Analysis of Power Systems: A Practical Approach offers an authoritative guide to the traditional capabilities and the new software and hardware approaches that can be used to carry out transient studies and make possible new and more complex research. The book explores a wide range of topics from an introduction to the subject to a review of the many advanced applications, involving the creation of custom-made models and tools and the application of multicore environments for advanced studies.
Transient Analysis of Power Systems: A Practical Approach 1st Table of contents:
Chapter 1: Introduction to Transients Analysis of Power Systems with ATP
1.1 Overview
1.2 The ATP Package
1.3 ATP Documentation
1.4 Scope of the Book
References
Chapter 2: Modelling of Power Components for Transients Studies
2.1 Introduction
2.2 Overhead Lines
2.3 Insulated Cables
2.4 Transformers
2.5 Rotating Machines
2.6 Circuit Breakers
Acknowledgement
References
Chapter 3: Solution Techniques for Electromagnetic Transient Analysis
3.1 Introduction
3.2 Modelling of Power System Components for Transient Analysis
3.3 Solution Techniques for Electromagnetic Transients Analysis
3.4 Transient Analysis of Control Systems
3.5 Initialization
3.6 Discussion
Acknowledgement
References
To Probe Further
Chapter 4: The ATP Package: Capabilities and Applications
4.1 Introduction
4.2 Capabilities of the ATP Package
4.3 Applications
4.4 Illustrative Case Studies
4.5 Remarks
References
To Probe Further
Chapter 5: Introduction to the Simulation of Electromagnetic Transients Using ATP
5.1 Introduction
5.2 Input Data File Using ATP Formats
5.3 Some Important Issues
5.4 Introductory Cases. Linear Circuits
5.5 Switching of Capacitive Currents
5.6 Switching of Inductive Currents
5.7 Transient Analysis of Circuits with Distributed Parameters
References
Acknowledgement
To Probe Further
Chapter 6: Calculation of Power System Overvoltages
6.1 Introduction
6.2 Power System Overvoltages: Causes and Characterization
6.3 Modelling for Simulation of Power System Overvoltages
6.4 ATP Capabilities for Power System Overvoltage Studies
6.5 Case Studies
References
To Probe Further
Chapter 7: Simulation of Rotating Machine Dynamics
7.1 Introduction
7.2 Representation of Rotating Machines in Transients Studies
7.3 ATP Rotating Machines Models
7.4 Solution Methods
7.5 Procedure to Edit Machine Data Input
7.6 Capabilities of Rotating Machine Models
7.7 Case Studies: Three‐Phase Synchronous Machine
7.8 Case Studies: Three‐Phase Induction Machine
References
To Probe Further
Chapter 8: Power Electronics Applications
8.1 Introduction
8.2 Converter Models
8.3 Power Semiconductor Models
8.4 Solution Methods for Power Electronics Studies
8.5 ATP Simulation of Power Electronics Systems
8.6 Power Electronics Applications in Transmission, Distribution, Generation and Storage Systems
8.7 Introduction to the Simulation of Power Electronics Systems
8.8 Case Studies
Acknowledgement
References
To Probe Further
Chapter 9: Creation of Libraries
9.1 Introduction
9.2 Creation of Custom‐Made Modules
9.3 Application of the ATP to Power Quality Studies
9.4 Custom‐Made Modules for Power Quality Studies
9.5 Case Studies
References
To Probe Further
Chapter 10: Protection Systems
10.1 Introduction
10.2 Modelling Guidelines for Protection Studies
10.3 Models of Instrument Transformers
10.4 Relay Modelling
10.5 Protection of Distribution Systems
10.6 Discussion
Acknowledgement
References
To Probe Further
Chapter 11: ATP Applications Using a Parallel Computing Environment
11.1 Introduction
11.2 Bifurcation Diagrams for Ferroresonance Characterization
11.3 Lightning Performance Analysis of Transmission Lines
11.4 Optimum Design of a Hybrid HVDC Circuit Breaker
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Tags: Transient Analysis, Power Systems, Practical Approach, Juan Martinez Velasco