IP Library Granted Patent US 8,604,633
Granted Patent B2
US 8,604,633 · App. 12/937,406 · Granted Dec 10, 2013

System for evaluating and controlling the efficiency of a wind turbine

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Quick Facts
Patent No.
US 8,604,633
App. No.
12/937,406
Granted
Dec 10, 2013
Kind
B2
Abstract

The invention relates to a system for evaluating the efficiency of a wind turbine ( 3 ), with a control system comprising means ( 11, 15 ) which are used to measure meteorological parameters M 1 , M 2 and are respectively arranged in the wind turbine ( 3 ) and in a meteorological tower ( 5 ), and means ( 13 ) for measuring the orientation β of the wind turbine and the power Pr generated by same. The system according to the invention comprises a computerised unit ( 21 ) which is connected to said measuring means ( 11, 13, 15 ) and provided with a first calculating module ( 23 ) designed to obtain a characteristic power Pc as a function of said parameters from the data obtained during a first operating step, and a second calculating module ( 25 ) designed to obtain the mean deviation Dm between the power Pr actually generated and the characteristic power Pc according to the function obtained by the first calculating means ( 23 ) in the set of at least one series of data.

Claims (11)

1. A system for the evaluation and control of the output of at least one wind turbine ( 3 ) located in a wind farm ( 1 ), the wind turbine ( 3 ) having a system for the control of its components which includes some first means of measurement ( 11 ) of some meteorological parameters M 1 situated in the wind turbine ( 3 ) and some second means of measurement ( 13 ) of the direction of orientation β of the wind turbine ( 3 ) and the power Pr actually produced by the wind turbine ( 3 ), the wind farm ( 1 ) having some third means of measurement ( 15 ) of some meteorological parameters M 2 located in a meteorological tower ( 5 ) situated in the same wind farm ( 1 ), characterised because it consists of a computerised unit ( 21 ) connected to the above-mentioned first, second and third means of measurement ( 11 , 13 , 15 ) which include:

a) a first calculation module ( 23 ) which obtains the characteristic power Pc of the wind turbine ( 3 ) as a function of at least the meteorological parameters M 1 and M 2 and the direction of orientation β of the wind turbine ( 3 ), from the data provided periodically by the first, second and third means of measurement ( 11 , 13 , 15 ) during a first stage of operation of the wind turbine ( 3 );

b) a second calculation module ( 25 ) which from the data provided periodically by the above-mentioned first, second and third means of measurement ( 11 , 13 , 15 ) during the normal operation of the wind turbine ( 3 ) obtains the mean deviation Dm between the power Pr actually produced by the wind turbine ( 3 ) and the characteristic power Pc corresponding to the values of the parameters M 1 and M 2 and the direction of orientation β of the wind turbine ( 3 ) provided jointly with the value of the power Pr, applying the function obtained with the first calculation module ( 23 ), in a set of one or more series of data corresponding to a predetermined number of periods.

2. A system for the evaluation and control of the output of at least one wind turbine ( 3 ) in accordance with claim 1 , characterised because the meteorological parameters M 1 comprise at least wind velocity ν and direction α and/or statistical parameters derived from them and the meteorological parameters M 2 comprise at least air pressure Pa, temperature T and relative humidity Hr and/or statistical parameters derived from them.

3. A system for the evaluation and control of the output of at least one wind turbine ( 3 ) in accordance with claim 1 , characterised in that in the first calculation module ( 23 ) the characteristic power Pc is obtained as a discrete function in relation to predetermined intervals of the meteorological parameters M 1 and M 2 and the direction of orientation b of the wind turbine.

4. A system for the evaluation and control of the output of at least one wind turbine ( 3 ) in accordance with claim 1 , characterised because the first stage of operation of the computer in which the characteristic power Pc is obtained as a function of at least the meteorological parameters M 1 and M 2 and the direction of orientation β of the wind turbine ( 3 ) terminates when a representative data for a pre-established subset of intervals of the velocity ν and the wind direction α based on historic data for the wind farm ( 1 ) have been obtained.

5. A system for the evaluation and control of the output of at least one wind turbine ( 3 ) in accordance with claim 1 , characterised because the periodicity of the data provided by the above-mentioned first, second and third means of measurement ( 11 , 13 , 15 ) falls between 10 and 60 minutes.

6. A system for the evaluation and control of the output of at least one wind turbine ( 3 ) in accordance with claim 1 , characterised because the minimum series of data to obtain the above-mentioned mean deviation Dm covers 100 periods.

7. A system for the evaluation and control of the output of at least one wind turbine ( 3 ) in accordance with claim 1 , characterised because mean deviations Dm for three series of at least 300, 1000 and 4000 periods are obtained.

8. A system for the evaluation and control of the output of at least one wind turbine ( 3 ) in accordance with claim 1 , characterised because the above-mentioned second calculation module ( 25 ) includes a sub-module ( 27 ) connected to the control system of the wind turbine ( 3 ) to transmit to it instructions to be executed by the above-mentioned control system in the event that the mean deviation Dm of one of the above-mentioned series exceeds certain pre-established thresholds.

9. A system for the evaluation and control of the output of at least one wind turbine ( 3 ) in accordance with claim 1 , characterised because the above-mentioned first means of measurement ( 11 ) comprise some principal and some duplicate auxiliary means and because the second calculation module ( 25 ) comprises some additional means for obtaining the above-mentioned mean deviation Dm from the data provided by the meteorological parameters M 1 both by the above-mentioned principal means and by the above-mentioned auxiliary means for the purpose of detecting any failures in these on obtaining discrepancies between the results.

Assignments (2)
CHANGE OF NAME Recorded Jan 17, 2020
From: GAMESA INNOVATION & TECHNOLOGY, S.L.
To: SIEMENS GAMESA RENEWABLE ENERGY INNOVATION & TECHNOLOGY, S.L.
Reel/Frame 051627/0814 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 12, 2010
From: LLOMBART ESTOPINAN, ANDRES; GUTIERREZ ARDANAZ, ROBERTO; GUERRERO CAMPO, JOSE JESUS; BELTRAN MARTINEZ, FRANCISCO JAVIER; SALLAN ARASANZ, JESUS; PUEYO RUFAS, CARLOS; TALAYERO NAVALES, ANA PATRICIA; MELERO ESTELA, JULIO JAVIER; GARCIA GRACIA, MIGUEL
To: GAMESA INNOVATION & TECHNOLOGY, S.L.
Reel/Frame 025123/0159 →