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Hydraulic turbine governing system is an important part of hydropower plants. Generally speaking, a typical hydropower plant is made up of the reservoir, water tunnel, surge tank, penstock, hydraulic turbine, speed governor, generator, and grid. Due to the water inertia, column compressibility and penstock-wall elasticity, the hydro-turbine governing system has a series of significant nonlinear characteristics. For the hydropower plant with long conduits, the elastic water hammer occurrence in penstock can cause major problems to hydraulic turbine. In this book, the sliding mode control for…mehr

Produktbeschreibung
Hydraulic turbine governing system is an important part of hydropower plants. Generally speaking, a typical hydropower plant is made up of the reservoir, water tunnel, surge tank, penstock, hydraulic turbine, speed governor, generator, and grid. Due to the water inertia, column compressibility and penstock-wall elasticity, the hydro-turbine governing system has a series of significant nonlinear characteristics. For the hydropower plant with long conduits, the elastic water hammer occurrence in penstock can cause major problems to hydraulic turbine. In this book, the sliding mode control for hydraulic turbine governing system based on elastic water hammer is studied.
Autorenporträt
Dianwei Qian is currently an Associate Professor in the North China Electric Power University, Beijing. He received a Bachelor degree from the Hohai University, Nanjing, in 2003 and a Master degree from the Northeastern University, Shenyang, in 2005 and a PHD degree from the Institute of Automation, Chinese Academy of Sciences, Beijing, in 2008.