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Modeling, simulation, and control of...
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Bambaravanage, Tharangika.
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Modeling, simulation, and control of a medium-scale power system
Record Type:
Electronic resources : Monograph/item
Title/Author:
Modeling, simulation, and control of a medium-scale power system/ by Tharangika Bambaravanage, Asanka Rodrigo, Sisil Kumarawadu.
Author:
Bambaravanage, Tharangika.
other author:
Rodrigo, Asanka.
Published:
Singapore :Springer Singapore : : 2018.,
Description:
xxvi, 175 p. :ill., digital ;24 cm.
[NT 15003449]:
Introduction -- Fundamentals of Electrical Power Systems -- Mathematical Modelling of The Power System -- Power System Stability and Control -- Computer Numerical Simulations -- References.
Contained By:
Springer eBooks
Subject:
Electric power systems - Management. -
Online resource:
http://dx.doi.org/10.1007/978-981-10-4910-1
ISBN:
9789811049101
Modeling, simulation, and control of a medium-scale power system
Bambaravanage, Tharangika.
Modeling, simulation, and control of a medium-scale power system
[electronic resource] /by Tharangika Bambaravanage, Asanka Rodrigo, Sisil Kumarawadu. - Singapore :Springer Singapore :2018. - xxvi, 175 p. :ill., digital ;24 cm. - Power systems,1612-1287. - Power systems..
Introduction -- Fundamentals of Electrical Power Systems -- Mathematical Modelling of The Power System -- Power System Stability and Control -- Computer Numerical Simulations -- References.
This book highlights the most important aspects of mathematical modeling, computer simulation, and control of medium-scale power systems. It discusses a number of practical examples based on Sri Lanka's power system, one characterized by comparatively high degrees of variability and uncertainty. Recently introduced concepts such as controlled disintegration to maintain grid stability are discussed and studied using simulations of practical scenarios. Power systems are complex, geographically distributed, dynamical systems with numerous interconnections between neighboring systems. Further, they often comprise a generation mix that includes hydro, thermal, combined cycle, and intermittent renewable plants, as well as considerably extended transmission lines. Hence, the detailed analysis of their transient behaviors in the presence of disturbances is both highly theory-intensive and challenging in practice. Effectively regulating and controlling power system behavior to ensure consistent service quality and transient stability requires the use of various schemes and systems. The book's initial chapters detail the fundamentals of power systems; in turn, system modeling and simulation results using Power Systems Computer Aided Design/Electromagnetic Transients including DC (PSCAD/EMTDC) software are presented and compared with available real-world data. Lastly, the book uses computer simulation studies under a variety of practical contingency scenarios to compare several under-frequency load-shedding schemes. Given the breadth and depth of its coverage, it offers a truly unique resource on the management of medium-scale power systems.
ISBN: 9789811049101
Standard No.: 10.1007/978-981-10-4910-1doiSubjects--Topical Terms:
826854
Electric power systems
--Management.
LC Class. No.: TK1005 / .B36 2018
Dewey Class. No.: 621.042
Modeling, simulation, and control of a medium-scale power system
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Introduction -- Fundamentals of Electrical Power Systems -- Mathematical Modelling of The Power System -- Power System Stability and Control -- Computer Numerical Simulations -- References.
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This book highlights the most important aspects of mathematical modeling, computer simulation, and control of medium-scale power systems. It discusses a number of practical examples based on Sri Lanka's power system, one characterized by comparatively high degrees of variability and uncertainty. Recently introduced concepts such as controlled disintegration to maintain grid stability are discussed and studied using simulations of practical scenarios. Power systems are complex, geographically distributed, dynamical systems with numerous interconnections between neighboring systems. Further, they often comprise a generation mix that includes hydro, thermal, combined cycle, and intermittent renewable plants, as well as considerably extended transmission lines. Hence, the detailed analysis of their transient behaviors in the presence of disturbances is both highly theory-intensive and challenging in practice. Effectively regulating and controlling power system behavior to ensure consistent service quality and transient stability requires the use of various schemes and systems. The book's initial chapters detail the fundamentals of power systems; in turn, system modeling and simulation results using Power Systems Computer Aided Design/Electromagnetic Transients including DC (PSCAD/EMTDC) software are presented and compared with available real-world data. Lastly, the book uses computer simulation studies under a variety of practical contingency scenarios to compare several under-frequency load-shedding schemes. Given the breadth and depth of its coverage, it offers a truly unique resource on the management of medium-scale power systems.
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Energy (Springer-40367)
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W9340366
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EB TK1005 .B36 2018
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