Source-Grid Interaction of Wind Power Integration Systems - Softcover

Xie; Wang; Zhang; Gu

 
9780323997485: Source-Grid Interaction of Wind Power Integration Systems

Inhaltsangabe

Source-Grid Interaction of Wind Power Integration Systems systematically describes the problems of source-grid interactions of wind power grid-connected system, introducing related research methods and proposing a series of novel control methods for damping oscillations. The book presents problems to be solved, thus enabling easy understanding and perception, from detailed analysis of the problems, to mathematical derivations and simulation verification.

  • Includes principles that can be used to analyze the operation and control of wind farms
  • Presents models developed from basic to complex aspects that affect modeling accuracy
  • Provides control methods and effectiveness verification based on rigorous theory and actual operational data

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Über die Autorinnen und Autoren

His major research interests include renewable energy, multi-vector energy system, system simulation, power electronic equipment, and smart grid.

His major research interests include dynamics, simulation and control of electromechanical interactions in power systems

He is mainly committed to new energy power generation and smart grid research. He has participated in and led a number of scientific research projects, sponsored by national science and technology research, and the National Natural Science Foundation of China.

His major research interests include multi-vector energy system, smart grid, and power economics.

Von der hinteren Coverseite

Source-Grid Interaction of Wind Power Integration Systems will systematically describe the problems of source-grid interactions of wind power grid-connected system, introducing related research methods and proposing a series of novel control methods for damping oscillations. It will systematically present the problems to be solved for enabling easy understanding and perception, from detailed analysis of the problems, to the mathematical derivations, and finally simulation verification.

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