Monday, 15 June 2015

Flexible AC Transmission System (Book E16)

Electricity market activities and a growing demand for electricity have led to heavily stressed power systems. This requires operation of the networks closer to their stability limits. Power system operation is affected by stability related problems, leading to unpredictable system behavior. Cost efficient solutions are preferred over network extensions. In many countries, permits to build new transmission lines are hard to get, which means the existing network has to be enforced to fulfill the changing requirements.

This book is motivated by the recent developments of FACTS-devices. Numerous types of FACTS-devices have been successfully applied in practical operation. Some are still in the pilot stage and many are proposed in research and development. From practical experience it has been seen that the investment into FACTS devices, in most of the cases, only pays off by considering their multi-functional capabilities, particularly in normal and emergency situations. This requires a three-phase modeling and a control design addressing both normal and emergency conditions which, in most of the cases, uses wide area information. The recent results and requirements for both modeling and control have motivated this book.
The focus and target of this book is to emphasize advanced modeling, analysis and control techniques of FACTS. These topics reflect the recent research and development of FACTS-devices, and foresee the future applications of FACTS in power systems. The book comprehensively covers a range of power system control problems like steady state voltage and power flow control, voltage and reactive power control, voltage stability control and small signal stability control using FACTS-devices.
                                       
             

 


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Chapters included in this BOOK are:

      1.       FACTS-Devices and Applications2.       Modeling of Multi-Functional Single Converter FACTS in Power Flow Analysis3.       Modeling of Multi-Converter FACTS in Power Flow Analysis4.       Modeling of FACTS-Devices in Optimal Power Flow Analysis5.       Modeling of FACTS in Three-Phase Power Flow and Three-Phase OPF Analysis6.       Steady State Power System Voltage Stability Analysis and Control with FACTS7.       Steady State Voltage Stability of Unbalanced Three-Phase Power Systems8.       Congestion Management and Loss Optimization with FACTS9.       Non-Intrusive System Control of FACTS10.   Autonomous Systems for Emergency and Stability Control of FACTS11.   Wide Area Control of FACTS12.   Modeling of Power Systems for Small Signal Stability Analysis with FACTS13.   Linear Control Design and Simulation of Power System Stability with FACTS

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