Static Compensators (STATCOMs) in Power Systems

Artikelnummer: 978-981-287-280-7
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A static compensator (STATCOM), also known as static synchronous compensator, is a member of the flexible alternating current transmission system (FACTS) devices. It is a power-electronics based regulating device which is composed of a voltage source converter (VSC) and is shunt-connected to alternating current electricity transmission and distribution networks. The voltage source is created from a DC capacitor and the STATCOM can exchange reactive power with the network. It can also supply some active power to the network, if a DC source of power is connected across the capacitor. A STATCOM is usually installed in the electric networks with poor power factor or poor voltage regulation to improve these problems. In addition, it is used to improve the voltage stability of a network. This book covers STATCOMs from different aspects. Different converter topologies, output filters and modulation techniques utilized within STATCOMs are reviewed. Mathematical modeling of STATCOM is presented in detail and different STATCOM control strategies and algorithms are discussed. Modified load flow calculations for a power system in the presence of STATCOMs are presented. Several applications of STATCOMs in transmission and distribution networks are discussed in different examples and optimization techniques for defining the optimal location and ratings of the STATCOMs in power systems are reviewed. Finally, the performance of the network protection scheme in the presence of STATCOMs is described. This book will be an excellent resource for postgraduate students and researchers interested in grasping the knowledge on STATCOMs.
EUDR exemption - product or manufacturing materials placed on the market prior to 31.12.2025.
A static compensator (STATCOM), also known as static synchronous compensator, is a member of the flexible alternating current transmission system (FACTS) devices. It is a power-electronics based regulating device which is composed of a voltage source converter (VSC) and is shunt-connected to alternating current electricity transmission and distribution networks. The voltage source is created from a DC capacitor and the STATCOM can exchange reactive power with the network. It can also supply some active power to the network, if a DC source of power is connected across the capacitor. A STATCOM is usually installed in the electric networks with poor power factor or poor voltage regulation to improve these problems. In addition, it is used to improve the voltage stability of a network. This book covers STATCOMs from different aspects. Different converter topologies, output filters and modulation techniques utilized within STATCOMs are reviewed. Mathematical modeling of STATCOM is presented in detail and different STATCOM control strategies and algorithms are discussed. Modified load flow calculations for a power system in the presence of STATCOMs are presented. Several applications of STATCOMs in transmission and distribution networks are discussed in different examples and optimization techniques for defining the optimal location and ratings of the STATCOMs in power systems are reviewed. Finally, the performance of the network protection scheme in the presence of STATCOMs is described. This book will be an excellent resource for postgraduate students and researchers interested in grasping the knowledge on STATCOMs.
EUDR exemption - product or manufacturing materials placed on the market prior to 31.12.2025.
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VerlagSpringer EN
EinbandFester Einband
Erscheinungsjahr2014
Seitenangabe735 S.
AusgabekennzeichenEnglisch
AbbildungenXXI, 735 p. 394 illus., 128 illus. in color., schwarz-weiss Illustrationen, farbige Illustrationen
MasseH23.5 cm x B15.5 cm 12'527 g
CoverlagSpringer (Imprint/Brand)
ReihePower Systems
AutorShahnia, Farhad (Hrsg.) / Rajakaruna, Sumedha (Hrsg.) / Ghosh, Arindam (Hrsg.)

Alle Bände der Reihe "Power Systems"

Über den Autor Farhad (Hrsg.) Shahnia

Professor Farhad Shahnia received his Ph.D. in electrical engineering from Queensland University of Technology (Australia) in 2011. Since 2015, he has been at the School of Engineering and Energy, Murdoch University, Perth, Australia. Prior to that, he was a lecturer at Curtin University (Australia, 2012-15), and a research fellow at Queensland University of Technology (Australia, 2011). He has published 8 books, 13 book chapters, and 200+ scholarly journal and conference articles. Professor Yilu Liu received her Ph.D. in electrical engineering from Ohio State University, US, in 1989. She is the UT-ORNL Governor's chair professor of Electrical Engineering and Computer Science, and the deputy director of the Center for Ultra-Wide-Area Resilient Electric Energy Transmission Networks at the University of Tennessee. She was named an IEEE fellow in 2003 and elected to the National Academy of Engineering in 2016, and a member of the National Academy of Inventors in 2017. She has published 450+ technical reports and papers. Professor Paolo Attilio Pegoraro has received his Ph.D. in electronic and telecommunication engineering from the University of Padova, Italy, in 2005. From 2015 to 2018, he was an assistant professor at University of Cagliari, Italy, where he is currently an associate professor. He has authored 8 book chapters and 200+ papers. He is an Associate Editor in Chief of the IEEE Transactions on Instrumentation and Measurement and the General Chair of the IEEE international workshop on applied measurements for power systems (AMPS).

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