Understanding Symmetrical Components For Power System Modeling


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Understanding Symmetrical Components for Power System Modeling


Understanding Symmetrical Components for Power System Modeling

Author: J. C. Das

language: en

Publisher: John Wiley & Sons

Release Date: 2016-12-15


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An essential guide to studying symmetrical component theory Provides concise treatment of symmetrical components Describes major sequence models of power system components Discusses Electromagnetic Transient Program (EMTP) models Includes worked examples to illustrate the complexity of calculations, followed by matrix methods of solution which have been adopted for calculations on digital computers

Understanding Symmetrical Components for Power System Modeling


Understanding Symmetrical Components for Power System Modeling

Author: J. C. Das

language: en

Publisher: John Wiley & Sons

Release Date: 2017-01-10


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An essential guide to studying symmetrical component theory Provides concise treatment of symmetrical components Describes major sequence models of power system components Discusses Electromagnetic Transient Program (EMTP) models Includes worked examples to illustrate the complexity of calculations, followed by matrix methods of solution which have been adopted for calculations on digital computers

Introduction to Electric Power and Drive Systems


Introduction to Electric Power and Drive Systems

Author: Paul C. Krause

language: en

Publisher: John Wiley & Sons

Release Date: 2017-02-28


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An introduction to the analysis of electric machines, power electronic circuits, electric drive performance, and power systems This book provides students with the basic physical concepts and analysis tools needed for subsequent coursework in electric power and drive systems with a focus on Tesla’s rotating magnetic field. Organized in a flexible format, it allows instructors to select material as needed to fit their school’s power program. The first chapter covers the fundamental concepts and analytical methods that are common to power and electric drive systems. The subsequent chapters offer introductory analyses specific to electric machines, power electronic circuits, drive system performance and simulation, and power systems. In addition, this book: Provides students with an analytical base on which to build in advanced follow-on courses Examines fundamental power conversions (dc-dc, ac-dc and dc-ac), harmonics, and distortion Describes the dynamic computer simulation of a brushless dc drive to illustrate its performance with both a sinusoidal inverter voltage approximation and more realistic stator six-step drive applied voltages Includes in-chapter short problems, numerous worked examples, and end-of-chapter problems to help readers review and more fully understand each topic