IP Library Granted Patent US 8,541,898
Granted Patent B2
US 8,541,898 · App. 12/994,226 · Granted Sep 24, 2013

Control method and system for a wind power installation in case of grid faults

Inventors: Jorge Acedo Sánchez (Sarriguren, ES); Ainhoa Cárcar Mayor (Sarriguren, ES); Josu Elorriaga Llanos (Sarriguren, ES); Jesús Mayor Lusarreta (Sarriguren, ES); Susana Simón Segura (Sarriguren, ES); David Solé López (Sarriguren, ES); Mikel Zabaleta Maeztu (Sarriguren, ES); Jesús López Taberna (Sarriguren, ES); Luis Marroyo Palomo (Sarriguren, ES)
Assignee: Ingeteam Power Technology, S.A.
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Quick Facts
Patent No.
US 8,541,898
App. No.
12/994,226
Granted
Sep 24, 2013
Kind
B2
Abstract

The present invention relates to a method and system for controlling a wind power installation connected to an electrical power grid, in case of a fault in said grid. In the electrical machines that form part of the wind power installation, generators and transformers, it is possible to change the impedance of the neutral closure introducing a plurality of active and passive elements. This limits the currents during the grid fault, thereby reducing the peak torque in the mechanical train of the wind turbines and allows guaranteeing compliance with the network connection requirements, as control of the active and reactive currents is maintained at all times.

Claims (72)

1. A control system for a wind power installation in case of grid faults wherein it increases temporarily the impedance between end terminals of windings of an electrical machine and a neutral point of the electrical machine of the wind power installation by means of at least one rectifier element and one set of active and passive elements, being said one rectifier element and said set of active and passive elements connected in series to said end terminals of the windings, and being said windings of the electrical machine selected from the group consisting of generator rotor windings, generator stator windings and windings of at least one transformer of the wind power installation.

2. The control system of claim 1 , wherein the temporarily increment of the impedance is carried out by rectifying a current arriving from the windings of the electrical machine to direct current, opening the active element and forcing the current arriving from the windings of the electrical machine to pass through the passive element in parallel to the active element.

3. The control system of claim 1 , applicable in generators with a stator connected to the power grid, wherein the terminals of the generator stator windings are connected to at least one rectifying element; a DC output of the at least one rectifying element is connected to the one set of active and passive elements.

4. The control system of claim 1 , applicable in asynchronous type generators with a winding rotor, the stator of which is connected to the power grid, wherein the terminals of the generator rotor windings are connected to at least one rectifying element; a DC output of the at least one rectifying element is connected to the one set of active and passive elements.

5. The control system of claim 1 , wherein the terminals of a winding selected between a primary winding and a secondary winding of one of the transformers of the wind power installation are connected to at least one rectifying element; a DC output of the at least one rectifying element is connected to the one set of active and passive elements.

6. The control system of claim 1 , wherein said the at least one rectifying element being a rectifier bridge, the passive element being an impedance and the active element being an active switch, which is connected in parallel to the impedance.

7. A control method for a wind power installation in case of grid faults that allows operating the system defined in claim 1 , comprising the following stages:

detecting the grid perturbations;

generating control signals for the active elements that increase the impedance between end terminals of windings of an electrical machine and a neutral point of the electrical machine of the wind power installation, being said windings selected from the group consisting of generator rotor windings, generator stator windings and windings of at least one transformer of the wind power installation;

detecting the end of the grid perturbations;

generating control signals for the active elements to return the impedance between end terminals of windings of an electrical machine and a neutral point of the electrical machine of the wind power installation to the value prior to its variation.

8. The control system of claim 2 , applicable in generators with a stator connected to the power grid, wherein the terminals of the generator stator windings are connected to at least one rectifying element; a DC output of the at least one rectifying element is connected to the one set of active and passive elements.

9. The control system of claim 2 , applicable in asynchronous type generators with a winding rotor, the stator of which is connected to the power grid, wherein the terminals of the generator rotor windings are connected to at least one rectifying element; a DC output of the at least one rectifying element is connected to the one set of active and passive elements.

10. The control system of claim 2 , wherein said the at least one rectifying element being a rectifier bridge, the passive element being an impedance and the active element being an active switch, which is connected in parallel to the impedance.

11. The control system of claim 3 , wherein said the at least one rectifying element being a rectifier bridge, the passive element being an impedance and the active element being an active switch, which is connected in parallel to the impedance.

12. The control system of claim 4 , wherein said the at least one rectifying element being a rectifier bridge, the passive element being an impedance and the active element being an active switch, which is connected in parallel to the impedance.

13. The control system of claim 5 , wherein said the at least one rectifying element being a rectifier bridge, the passive element being an impedance and the active element being an active switch, which is connected in parallel to the impedance.

14. A control method for a wind power installation in case of grid faults that allows operating the system defined in claim 2 , comprising the following stages:

detecting the grid perturbations;

generating control signals for the active elements that increase the impedance between end terminals of windings of an electrical machine and a neutral point of the electrical machine of the wind power installation, being said windings selected from the group consisting of generator rotor windings, generator stator windings and windings of at least one transformer of the wind power installation;

detecting the end of the grid perturbations;

generating control signals for the active elements to return the impedance between end terminals of windings of an electrical machine and a neutral point of the electrical machine of the wind power installation to the value prior to its variation.

15. A control method for a wind power installation in case of grid faults that allows operating the system defined in claim 3 , comprising the following stages:

detecting the grid perturbations;

generating control signals for the active elements that increase the impedance between end terminals of windings of an electrical machine and a neutral point of the electrical machine of the wind power installation, being said windings selected from the group consisting of generator rotor windings, generator stator windings and windings of at least one transformer of the wind power installation;

detecting the end of the grid perturbations;

generating control signals for the active elements to return the impedance between end terminals of windings of an electrical machine and a neutral point of the electrical machine of the wind power installation to the value prior to its variation.

16. A control method for a wind power installation in case of grid faults that allows operating the system defined in claim 4 , comprising the following stages:

detecting the grid perturbations;

generating control signals for the active elements that increase the impedance between end terminals of windings of an electrical machine and a neutral point of the electrical machine of the wind power installation, being said windings selected from the group consisting of generator rotor windings, generator stator windings and windings of at least one transformer of the wind power installation;

detecting the end of the grid perturbations;

generating control signals for the active elements to return the impedance between end terminals of windings of an electrical machine and a neutral point of the electrical machine of the wind power installation to the value prior to its variation.

17. A control method for a wind power installation in case of grid faults that allows operating the system defined in claim 5 , comprising the following stages:

detecting the grid perturbations;

generating control signals for the active elements that increase the impedance between end terminals of windings of an electrical machine and a neutral point of the electrical machine of the wind power installation, being said windings selected from the group consisting of generator rotor windings, generator stator windings and windings of at least one transformer of the wind power installation;

detecting the end of the grid perturbations;

generating control signals for the active elements to return the impedance between end terminals of windings of an electrical machine and a neutral point of the electrical machine of the wind power installation to the value prior to its variation.

18. A control method for a wind power installation in case of grid faults that allows operating the system defined in claim 6 , comprising the following stages:

detecting the grid perturbations;

generating control signals for the active elements that increase the impedance between end terminals of windings of an electrical machine and a neutral point of the electrical machine of the wind power installation, being said windings selected from the group consisting of generator rotor windings, generator stator windings and windings of at least one transformer of the wind power installation;

detecting the end of the grid perturbations;

generating control signals for the active elements to return the impedance between end terminals of windings of an electrical machine and a neutral point of the electrical machine of the wind power installation to the value prior to its variation.

19. A control method for a wind power installation in case of grid faults that allows operating the system defined in claim 8 , comprising the following stages:

detecting the grid perturbations;

generating control signals for the active elements that increase the impedance between end terminals of windings of an electrical machine and a neutral point of the electrical machine of the wind power installation, being said windings selected from the group consisting of generator rotor windings, generator stator windings and windings of at least one transformer of the wind power installation;

detecting the end of the grid perturbations;

generating control signals for the active elements to return the impedance between end terminals of windings of an electrical machine and a neutral point of the electrical machine of the wind power installation to the value prior to its variation.

20. A control method for a wind power installation in case of grid faults that allows operating the system defined in claim 9 , comprising the following stages:

detecting the grid perturbations;

generating control signals for the active elements that increase the impedance between end terminals of windings of an electrical machine and a neutral point of the electrical machine of the wind power installation, being said windings selected from the group consisting of generator rotor windings, generator stator windings and windings of at least one transformer of the wind power installation;

detecting the end of the grid perturbations;

generating control signals for the active elements to return the impedance between end terminals of windings of an electrical machine and a neutral point of the electrical machine of the wind power installation to the value prior to its variation.

21. A control method for a wind power installation in case of grid faults that allows operating the system defined in claim 10 , comprising the following stages:

detecting the grid perturbations;

generating control signals for the active elements that increase the impedance between end terminals of windings of an electrical machine and a neutral point of the electrical machine of the wind power installation, being said windings selected from the group consisting of generator rotor windings, generator stator windings and windings of at least one transformer of the wind power installation;

detecting the end of the grid perturbations;

generating control signals for the active elements to return the impedance between end terminals of windings of an electrical machine and a neutral point of the electrical machine of the wind power installation to the value prior to its variation.

22. A control method for a wind power installation in case of grid faults that allows operating the system defined in claim 11 , comprising the following stages:

detecting the grid perturbations;

generating control signals for the active elements that increase the impedance between end terminals of windings of an electrical machine and a neutral point of the electrical machine of the wind power installation, being said windings selected from the group consisting of generator rotor windings, generator stator windings and windings of at least one transformer of the wind power installation;

detecting the end of the grid perturbations;

generating control signals for the active elements to return the impedance between end terminals of windings of an electrical machine and a neutral point of the electrical machine of the wind power installation to the value prior to its variation.

23. A control method for a wind power installation in case of grid faults that allows operating the system defined in claim 12 , comprising the following stages:

detecting the grid perturbations;

generating control signals for the active elements that increase the impedance between end terminals of windings of an electrical machine and a neutral point of the electrical machine of the wind power installation, being said windings selected from the group consisting of generator rotor windings, generator stator windings and windings of at least one transformer of the wind power installation;

detecting the end of the grid perturbations;

generating control signals for the active elements to return the impedance between end terminals of windings of an electrical machine and a neutral point of the electrical machine of the wind power installation to the value prior to its variation.

24. A control method for a wind power installation in case of grid faults that allows operating the system defined in claim 13 , comprising the following stages:

detecting the grid perturbations;

generating control signals for the active elements that increase the impedance between end terminals of windings of an electrical machine and a neutral point of the electrical machine of the wind power installation, being said windings selected from the group consisting of generator rotor windings, generator stator windings and windings of at least one transformer of the wind power installation;

detecting the end of the grid perturbations;

generating control signals for the active elements to return the impedance between end terminals of windings of an electrical machine and a neutral point of the electrical machine of the wind power installation to the value prior to its variation.

Assignments (2)
MERGER Recorded Jun 11, 2012
From: INGETEAM ENERGY, S.A.
To: INGETEAM POWER TECHNOLOGY, S.A.
Reel/Frame 028349/0481 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 19, 2011
From: ACEDO SANCHEZ, JORGE; CARCAR MAYOR, AINHOA; ELORRIAGA LLANOS, JOSU; MAYOR LUSARRETA, JESUS; SIMON SEGURA, SUSANA; SOLE LOPEZ, DAVID; ZABALETA MAEZTU, MIKEL; LOPEZ TABERNA, JESUS; MARROYO PALOMO, LUIS
To: INGETEAM ENERGY, S.A.
Reel/Frame 025659/0025 →
Priority Claims (1)
ES 200801525 · May 23, 2008 · national
Continuity (1)
Related Publication 20110140432A1 · Jun 16, 2011