IP Library Granted Patent US 10,697,439
Granted Patent B2
US 10,697,439 · App. 15/622,317 · Granted Jun 30, 2020

Offset toggle method for wind turbine operation

Inventors: Frederick Wilson Wheeler (Niskayuna, NY); Danian Zheng (Fairfield, CT); James Huu Phan (Saratoga Springs, NY); Brian Allen Rittenhouse (Simpsonville, SC)
Assignee: General Electric Company
F03D17/00F03D7/04F03D7/043G01M15/14F05B2230/80F05B2260/83F05B2270/20F05B2270/32F05B2270/327F05B2270/328F05B2270/329F05B2270/335
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Quick Facts
Patent No.
US 10,697,439
App. No.
15/622,317
Granted
Jun 30, 2020
Kind
B2
Abstract

A method for evaluating performance of a wind turbine includes operating the wind turbine in a first operational mode. The method also includes generating a first set of operational data relating to the first operational mode. More specifically, the first set of operational data includes, at least, a first parameter and a second parameter. Further, the first and second parameters of the first set are measured during different time periods during the first operational mode. The method further includes changing the first operational mode to a second operational mode. Moreover, the method includes generating a second set of operational data relating to the second operational mode. The second set of operational data also includes, at least, a first parameter and a second parameter. Thus, the method includes determining a performance characteristic of the first and second operational modes based on the first and second sets of operational data.

Claims (29)

1. A method for evaluating performance of a wind turbine in different operational modes, the method comprising:

operating the wind turbine in a first operational mode;

generating a first set of operational data relating to the first operational mode, the first set of operational data comprising data pairs, each data pair comprising a wind speed measured exclusively at the wind turbine and a measured power output, the first set of operational data being used to determine a first power curve;

changing the first operational mode to a second operational mode;

generating a second set of operational data relating to the second operational mode, the second set of operational data comprising data pairs, each data pair comprising a wind speed measured exclusively at the wind turbine and a measured power output, the second set of operational data being used to determine a second power curve, the wind speed of the second set of operational data being measured during the first operational mode and the measured power output of the second set of operational data being measured during the second operational mode such that the wind speed of the first and second sets of operational data are both measured during the first operational mode; and,

determining a performance characteristic of the first and second operational modes based on the first and second power curves.

2. The method of claim 1 , wherein the measured wind speeds and measured power outputs of the first set are measured during different time periods during the first operational mode.

3. The method of claim 2 , wherein the wind speed of the first set is measured during a first operational window of the first operational mode, and wherein the measured power output of the first set is measured during a second operational window of the first operational mode, the wind speed of the second set is measured during a second operational window of the first operational mode, and the measured power output of the second set is measured during a first operational window of the second operational mode.

4. The method of claim 3 , wherein a time lag between the wind speed and the measured power output for each data pair of the first and second sets of operational data is fixed and constant.

5. The method of claim 1 , further comprising comparing the first and second power curves for the first and second operational modes to determine the optimal operational mode.

6. The method of claim 1 , further comprising measuring the wind speed from respective first and second sets of operational data via a nacelle-mounted anemometer for the first and second operational modes.

7. The method of claim 1 , further comprising filtering the first and second sets of operational data.

8. The method of claim 1 , further comprising toggling between the first and second operational modes and generating a plurality of data pairs for each of the first and second operational sets of data.

9. The method of claim 1 , further comprising implementing a change to the wind turbine before operating the wind turbine in the second operational mode, wherein the change comprises at least one of changing one or more control parameters of the wind turbine or providing at least one upgrade to the wind turbine.

10. The method of claim 9 , wherein the one or more control parameters comprises at least one of a generator speed, a torque set point, a pitch angle, a tip speed ratio, or a yaw angle.

11. The method of claim 9 , wherein the at least one upgrade comprises any one of or a combination of the following: a revised pitch or yaw angle, tip speed ratio, software upgrades, controls upgrades, hardware upgrades, or wake controls.

12. A system for evaluating performance of a wind turbine in different operational modes, the system comprising:

a processor communicatively coupled to one or more sensors, the processor configured to perform one or more operations, the one or more operations comprising:

operating the wind turbine in a baseline operational mode;

transitioning from the baseline operational mode to a first operational mode;

generating a first set of operational data comprising data pairs, each data pair comprising a wind speed measured exclusively at the wind turbine and a measured power output, the first set of operational data being used to determine a first power curve, the wind speed of the first set being measured during the baseline operational mode and the measured power output of the first set being measured during the first operational mode;

transitioning from the first operational mode back to the baseline operational mode;

transitioning from the baseline operational mode to a second operational mode;

generating a second set of operational data comprising data pairs, each data pair comprising a wind speed measured exclusively at the wind turbine and a measured power output, the second set of operational data being used to determine a second power curve, the wind speed of the second set of operational data being measured during the baseline operational mode and the measured power output of the second set of operational data being measured during the second operational mode such that the wind speed of the first and second sets of operational data are both measured during the first operational mode; and,

determining a performance characteristic of the first and second operational modes based on the first and second power curves.

13. The system of claim 12 , further comprising:

toggling back and forth between the baseline operational mode and plurality of subsequent operational modes after the second operational mode;

generating a set of operational data for each of the subsequent operational modes comprising, at least, a first parameter and a second parameter, the first parameters of each data set being measured during the baseline operational mode and the second parameters of each data set being measured during the respective operational mode; and,

comparing the sets of operational data to determine the optimal operational mode.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 17, 2023
From: GENERAL ELECTRIC COMPANY
To: GE INFRASTRUCTURE TECHNOLOGY LLC
Reel/Frame 065727/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 14, 2017
From: WHEELER, FREDERICK WILSON; ZHENG, DANIAN; PHAN, JAMES HUU; RITTENHOUSE, BRIAN ALLEN
To: GENERAL ELECTRIC COMPANY
Reel/Frame 042704/0187 →
Continuity (1)
Related Publication 20180363632A1 · Dec 20, 2018
Cited By (2)
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