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The estimation of the rotor speed is designed on the basis of the sliding mode control theory.
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A diffusion function with high diffusion speed is designed, and a key generator based on the chaotic skew tent map is derived.
The integral proportional speed controller can be designed on-line according to the estimated rotor parameters, and the observed disturbance torque is feed-forward to increase the robustness of the system.
Moreover, a sliding mode speed controller is designed based on a sliding surface.
In this paper a fault tolerant wind speed estimator is designed based on a set of unknown input observers, each designed to the different sets of non-faulty sensors.
In this paper, a nonlinear controller to optimize the stationary behaviour of a variable speed WPS is designed, which is based on the onoff control advantages.
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Synchronization algorithm based on the speed-gradient method is designed.
Secondly, a speed-up strategy is designed to further reduce computations, which is based on labeling the steadily evolved points.
Used by skiers and snowboarders alike, this long-lasting thick wax aims to increase glide and speed in any conditions and is designed to stay on, run after run.
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