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Transient analysis of power systems : a practical approach / edited by Juan A. Martinez-Velasco.

Contributor(s): Material type: TextTextPublisher: Hoboken, New Jersey, USA : Wiley-IEEE Press, 2020Description: xxi, 596 pages : illustrations ; 26 cmContent type:
  • text
Media type:
  • unmediated
Carrier type:
  • volume
ISBN:
  • 9781119480532
Subject(s): Additional physical formats: Online version:: Transient analysis of power systemsDDC classification:
  • 621.31921 23 T687
LOC classification:
  • TK3226 .T76 2020
Contents:
Introduction to transients analysis of power systems with ATP -- Modelling of power components for transients studies -- Solution techniques for electromagnetic transient analysis -- The ATP package: capabilities and applications -- Introduction to the simulation of electromagnetic transients using ATP -- Calculation of power system overvoltages -- Simulation of rotating machine dynamics -- Power electronics applications -- Creation of libraries -- Protection systems -- ATP applications using a parallel computing environment.
Summary: "This book is aimed at illustrating how the traditional capabilities and the new software and hardware capabilities can be used to carry out the usual transient studies and making possible new and more complex studies. The topics span an introduction to some advanced applications, involving the creation of custom-made models and tools, and the application of multicore environments for advanced studies. All studies will be supported by practical examples and simulation results. Although an introduction to the electromagnetic transients analysis of power systems is covered, a minimum knowledge on power systems transients is advisable. Part I will cover general aspects of the transient analysis (e.g. modelling guidelines, solution techniques, capabilities of a transients tool). Part II will be dedicated to the usual application of a transient tool (e.g. overvoltages, power quality studies, simulation of power electronics devices) plus an introduction to the transient analysis using the ATP. Part III will illustrate how to expand ATP capabilities and applications by creating new models, library of models, or building open systems for optimum selection of power system component parameters"-- Provided by publisher.
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Holdings
Item type Current library Shelving location Call number Copy number Status Date due Barcode
Books Books Main Library Graduate School Library GRD 621.31921 T687 2020 (Browse shelf(Opens below)) 1-1 Available 028397

Includes bibliographical references and index.

Introduction to transients analysis of power systems with ATP -- Modelling of power components for transients studies -- Solution techniques for electromagnetic transient analysis -- The ATP package: capabilities and applications -- Introduction to the simulation of electromagnetic transients using ATP -- Calculation of power system overvoltages -- Simulation of rotating machine dynamics -- Power electronics applications -- Creation of libraries -- Protection systems -- ATP applications using a parallel computing environment.

"This book is aimed at illustrating how the traditional capabilities and the new software and hardware capabilities can be used to carry out the usual transient studies and making possible new and more complex studies. The topics span an introduction to some advanced applications, involving the creation of custom-made models and tools, and the application of multicore environments for advanced studies. All studies will be supported by practical examples and simulation results. Although an introduction to the electromagnetic transients analysis of power systems is covered, a minimum knowledge on power systems transients is advisable. Part I will cover general aspects of the transient analysis (e.g. modelling guidelines, solution techniques, capabilities of a transients tool). Part II will be dedicated to the usual application of a transient tool (e.g. overvoltages, power quality studies, simulation of power electronics devices) plus an introduction to the transient analysis using the ATP. Part III will illustrate how to expand ATP capabilities and applications by creating new models, library of models, or building open systems for optimum selection of power system component parameters"-- Provided by publisher.

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