IP Library Granted Patent US 10,060,412
Granted Patent B2
US 10,060,412 · App. 14/377,054 · Granted Aug 28, 2018

Apparatus for adjusting the yaw of a wind turbine

Inventor: Jesper Kjaer Hansen (Ebeltoft, DK)
Assignee: ROMO Wind AG
F03D7/0204F03D7/042Y02E10/723
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Quick Facts
Patent No.
US 10,060,412
App. No.
14/377,054
Granted
Aug 28, 2018
Kind
B2
Abstract

The invention regards an apparatus for adjusting the yaw of a wind turbine adapted for mounting on a wind turbine comprising, a system for measuring the wind direction adapted, via a control signal, to control the yaw angle of the wind turbine based on the wind direction, and a wind sensor system adapted to determine the yaw error of the wind turbine, and means for modifying the control signal based on the yaw error determined by the wind sensor system.

Claims (33)

1. An apparatus for adjusting the yaw of a wind turbine including a rotor, adapted for mounting on a wind turbine, comprising:

a system for measuring the wind direction operative, via a control signal, to control the yaw angle of the wind turbine based on the wind direction, wherein the system for measuring the wind direction includes a wind vane or a sonic wind sensor, the wind vane or the sonic wind sensor being mounted behind the rotor, and a wind turbine controller configured to determine the control signal with the wind direction as measured behind the rotor and send the control signal to a yaw drive for controlling the yaw angle of the wind turbine;

a retrofit wind sensor system including a retrofit sensor for measuring a wind speed at the surface of the rotor or a pressure on the surface of the rotor, the retrofit sensor being fixed to the rotor of the wind turbine and operative to determine a yaw error of the wind turbine; and

the wind sensor system modifying the control signal based on the yaw error determined by the wind sensor system such that the controlled yaw angle is modified when the yaw drive receives the modified control signal.

2. The apparatus according to claim 1 , wherein the control signal is an electric signal and the wind sensor system modifies the control signal electronically.

3. The apparatus according to claim 1 , wherein the wind sensor system comprises a spinner anemometer.

4. The apparatus according to claim 1 , wherein the wind sensor system comprises a controller, wherein the controller is operative to determine error in the sensor in which case it will terminate the modifying the control signal.

5. The apparatus according to claim 1 , wherein the wind sensor system modifies the control signal based on the power generated by the wind turbine.

6. The apparatus according to claim 1 , wherein the wind sensor system modifies the control signal based on meteorological data and/or deformation of the wind turbine and/or vibrations in the wind turbine and/or the cardinal direction of the wind turbine.

7. An apparatus for adjusting the yaw of a wind turbine adapted for mounting on a wind turbine comprising:

a system for measuring the wind direction operative, via a control signal, to control the yaw angle of the wind turbine based on the wind direction, and

a wind sensor system operative to determine the yaw error of the wind turbine, and

means for modifying the control signal based on the yaw error determined by the wind sensor system,

wherein the means for modifying the control signal comprises means for moving or rotating the system for measuring the wind direction in relation to the wind turbine.

8. The apparatus according to claim 7 , wherein the means for moving or rotating the system for measuring the wind direction comprises a servomechanism, which facilitates the movement or rotation of the system for measuring the wind direction in relation to the wind turbine.

9. The apparatus according to claim 8 , wherein the servomechanism is spring-loaded and is operative to eliminate modifying of the control signal in the absence of a signal or presence of a specific signal from the wind sensor system.

10. The apparatus according to claim 8 , wherein the servo mechanism comprises a motor and/or an actuator.

11. A method for adjusting the yaw angle of a wind turbine wherein a wind measuring device controls the yaw of the wind turbine, wherein the controlled yaw angle is modified on the basis of a yaw error determined by a wind sensor system and, wherein yaw angle is modified by mechanically moving or rotating the wind measuring device.

12. The method according to claim 11 , wherein the movement or rotation is facilitated by a mechanism, which comprises a servomechanism.

13. An apparatus for adjusting the yaw of a wind turbine and adapted for mounting on a wind turbine, comprising:

a retrofit sensor fixed to a rotor of a wind turbine, wherein the retrofit sensor is operable to determine a wind speed at the surface of the rotor or a pressure on the rotor, and wherein a yaw error is determined based on the output of the retrofit sensor;

a wind vane mounted on a nacelle behind the rotor of the wind turbine for measuring a wind direction, wherein the wind direction is communicated to a wind turbine controller as an electronic signal; and

a yaw drive for adjusting the yaw of the wind turbine, wherein the yaw of the wind turbine is adjusted based on a presence of the yaw error, wherein the electronic signal is modified based on the yaw error such that the yaw drive receives a modified control signal.

14. The apparatus according to claim 13 , wherein the retrofit sensor is a wind speed sensor.

15. The apparatus according to claim 13 , wherein the retrofit sensor is a pressure sensor for determining a pressure on the surface of the rotor.

16. The apparatus according to claim 15 , wherein the yaw error is determined based on the pressure on the surface of the rotor.

17. A method for adjusting the yaw angle of a wind turbine including a rotor, wherein a wind measuring device for measuring the wind direction controls the yaw of the wind turbine via a control signal,

wherein the system for measuring the wind direction includes a wind vane or a sonic wind sensor, the wind vane or the sonic wind sensor being mounted behind the rotor, and a wind turbine controller with the wind direction as measured behind the rotor, the wind turbine controller configured to determine the control signal with the wind direction as measured behind the rotor and send the control signal to a yaw drive for controlling the yaw angle of the wind turbine,

wherein the controlled yaw angle is modified on the basis of a yaw error determined by a retrofit wind sensor system including a retrofit sensor for measuring a wind speed or a pressure on the surface of the rotor, the retrofit sensor being fixed to the rotor of the wind turbine, wherein the retrofit wind sensor system modifies the control signal based on the yaw error determined by the retrofit wind sensor system such that the controlled yaw angle is modified when the yaw drive receives the modified control signal.

18. The method according to claim 17 , wherein yaw angle is modified by electronically modifying the control signal.

19. The method according to claim 17 , wherein the wind sensor system determines the yaw error by use of a spinner anemometer.

20. The method according to claim 17 , wherein the controlled yaw angle is further modified on the basis of power generated by the wind turbine.

21. The method according to claim 17 , wherein the controlled yaw angle is further modified on the basis of meteorological data and/or deformation of the wind turbine and/or vibrations in the wind turbine and/or the cardinal direction of the wind turbine.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 7, 2014
From: HANSEN, JESPER KJAER
To: ROMO WIND AG
Reel/Frame 033482/0525 →
Priority Claims (2)
EP 12154393 · Feb 8, 2012 · regional
DK 2012 70591 · Sep 27, 2012 · national
Continuity (2)
Provisional Application 61596283 · Feb 8, 2012
Related Publication 20140348650A1 · Nov 27, 2014