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 alterna
Static Compensators (STATCOMs) in Power Systems
β Scribed by Farhad Shahnia, Sumedha Rajakaruna, Arindam Ghosh (eds.)
- Publisher
- Springer-Verlag Singapur
- Year
- 2015
- Tongue
- English
- Leaves
- 741
- Series
- Power Systems
- Edition
- 1
- Category
- Library
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β¦ Synopsis
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.
β¦ Table of Contents
Front Matter....Pages i-xxi
Converter and Output Filter Topologies for STATCOMs....Pages 1-34
Multilevel Converter Topologies for STATCOMs....Pages 35-82
Analysis and Implementation of an 84-Pulse STATCOM....Pages 83-110
Mathematical Modeling and Control Algorithms of STATCOMs....Pages 111-145
STATCOM Control Strategies....Pages 147-186
Robust Nonlinear Control of STATCOMs....Pages 187-223
Versatile Control of STATCOMs Using Multiple Reference Frames....Pages 225-263
Control of Multilevel STATCOMs....Pages 265-311
Adaptive Observer for Capacitor Voltages in Multilevel STATCOMs....Pages 313-337
Modeling and Control of STATCOMs....Pages 339-369
Study of STATCOM in abc Framework....Pages 371-403
Modeling of STATCOM in Load Flow Formulation....Pages 405-435
Optimal Placement and Sizing of STATCOM in Power Systems Using Heuristic Optimization Techniques....Pages 437-476
Optimal Placement of STATCOMs Against Short-Term Voltage Instability....Pages 477-503
STATCOM Application for Enhancement of Available Power Transfer Capability in Transmission Networks....Pages 505-530
STATCOM Application for Decentralized Secondary Voltage Control of Transmission Networks....Pages 531-556
Analysis and Damping of Subsynchronous Oscillations Using STATCOM....Pages 557-593
STATCOM Application for Mitigation of Subsynchronous Resonance in Wind Farms Connected to Series-Compensated Transmission Lines....Pages 595-659
STATCOM on the Mexican Power Systems: Two Case Studies....Pages 661-685
Stability Analysis of STATCOM in Distribution Networks....Pages 687-714
Network Protection Systems Considering the Presence of STATCOMs....Pages 715-735
β¦ Subjects
Power Electronics, Electrical Machines and Networks; Energy Systems; Control; Measurement Science and Instrumentation; Energy Economics; Circuits and Systems
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