WIND TURBINE DAMPING OF TOWER RESONANT MOTION AND SYMMETRIC BLADE MOTION USING ESTIMATION METHODS
A method for wind turbine tower load control includes controlling the pitch of the rotor blades in a conventional manner by a collective command component. An estimator estimates the tower resonant acceleration and the thrice-per-revolution blade imbalance acceleration. Combining logic, connected to the estimated resonant acceleration and to the estimated thrice-per-revolution (3P) acceleration provides a combined pitch modulation to damp the tower resonant motion and the thrice-per-revolution motion using collective modulation. The pitch modulation is combined with the collective command component to drive the pitch actuators.
1 . An apparatus that damps unwanted frequencies in a wind turbine tower comprising:
a rotor blade pitch command signal;
tower damping logic comprising motion estimates using tower acceleration measurements;
an output of said tower damping logic comprising a collective motion modulation based on said motion estimates; and,
combining logic connected to said tower damping logic and to said pitch command, an output of said combining logic being a combined blade pitch command capable of commanding pitch of the rotor blades, which includes damping of said wind turbine tower.
2 . The apparatus of claim 1 wherein said collective motion modulation includes one or more of tower resonant motion and an unwanted frequency motion.
3 . The apparatus of claim wherein said motion estimates include one or more of resonant motion estimates and unwanted frequency motion estimates.
4 . A method of using tower acceleration measurements to damp tower resonance motion, while also suppressing unwanted signals in the measurements, in a wind turbine tower which uses a pitch command to control pitch of rotor blades of said wind turbine, comprising steps of:
A. measuring tower acceleration;
B. estimating the tower resonant motion and the unwanted motion using the acceleration measurements
C. providing a blade pitch resonant command to damp tower motion using said tower resonant motion estimates;
D. combining said blade pitch resonant command with said pitch command resulting in a combined pitch command; and
F. using said combined pitch command to control pitch of the rotor blades in order to damp said wind turbine tower.
5 . The method of claim 4 further comprising:
C. providing a blade pitch unwanted command to damp the unwanted motion using said unwanted motion estimates; and,
D. combining the blade pitch unwanted command to form the combined pitch command.