文件名称:Sciencedirect_articles_16Oct2014_03-26-33.659
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DFIG system, including a
wind turbine, a generator, power electronic converters and power system grid are
modeled. All of the control algorithms and operation modes are simulated. The active
power is always controlled at maximum output while the reactive power is controlled to
achieve a particular power factor or line voltage. Second, a complete DFIG wind power
test bench including a wind turbine emulator is designed and built. The back-to-back
converters are designed to control the DFIG. A Microchip d
wind turbine, a generator, power electronic converters and power system grid are
modeled. All of the control algorithms and operation modes are simulated. The active
power is always controlled at maximum output while the reactive power is controlled to
achieve a particular power factor or line voltage. Second, a complete DFIG wind power
test bench including a wind turbine emulator is designed and built. The back-to-back
converters are designed to control the DFIG. A Microchip d
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A-review-of-maximum-power-point-tracking-algorithms-for-wind-energy-systems_2012_Renewable-and-Sustainable-Energy-Reviews.htm