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In this paper, a primary frequency control strategy based on fuzzy logic, designed for variable-speed wind generators, is proposed and tested on a 2.2 kW test bench. The fuzzy logic supervisor ensures a regular primary reserve for a large range of wind speeds without any wind speed measurement. This supervisor controls simultaneously the generator torque and the pitch angle to keep the primary reserve;...
In this paper, a primary frequency control strategy based on fuzzy logic designed for variable speed wind generator is proposed. The fuzzy logic supervisor ensures a regular primary reserve on a large range of wind speed without any wind speed measurement. This supervisor controls simultaneously the generator torque and the pitch angle to keep the primary reserve; it determines in real time the generator...
In this paper, a primary frequency control strategy based on fuzzy logic designed for variable speed wind generators is proposed and tested on a 2,2 kW test bench. The fuzzy logic supervisor ensures a regular primary reserve on a large range of wind speed without any wind speed measurement. This supervisor controls simultaneously the generator torque and the pitch angle to keep the primary reserve;...
The main objective of this work is to emulate the capacity of a variable speed wind turbine generator (WTG) to participate in primary frequency control by using a 2,2 kW test bench. This participation requires a power reserve which is obtained with the help of the generator torque control by following a power reference value lower than the maximum power which must be extracted from the wind. This...
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