IP Library Patent Application 14854711
Patent Application
App. No. 14/854,711

METHOD AND ARRANGEMENT FOR DETERMINING LEAKAGE INDUCTANCES OF DOUBLE FED INDUCTION GENERATOR

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Patent No.
US None
App. No.
14/854,711
Abstract

A method and arrangement for determining leakage inductances of a double fed induction generator, DFIG, ( 10 ) wherein, in response to the stator current of the DFIG being equal to or below a first predetermined threshold, values of a stator voltage, a rotor voltage and a rotor current of the DFIG are determined, and a rotor leakage inductance of the DFIG is calculated on the basis the determined values, and, in response to the rotor current of the DFIG being equal to or below a second predetermined threshold, values of the stator voltage, the rotor voltage and the stator current of the DFIG are determined, and a stator leakage inductance of the DFIG is calculated on the basis of the determined values.

Claims (34)

1 . A method for determining leakage inductances of a double fed induction generator, DFIG, the method comprising:

during operation of the DFIG, performing at least one of a) and b):

a) controlling a rotor voltage of the DFIG such that a stator current of the DFIG approaches zero;

in response to the stator current of the DFIG being equal to or below a first predetermined threshold, determining values of a stator voltage of the DFIG, a rotor voltage of the DFIG and a rotor current of the DFIG, or quantities indicative thereof; and

calculating a rotor leakage inductance of the DFIG on the basis of at least the determined values of the stator voltage of the DFIG, the rotor voltage of the DFIG and the rotor current of the DFIG, or the quantities indicative thereof,

b) controlling a rotor voltage of the DFIG such that the rotor current of the DFIG approaches zero;

in response to the rotor current of the DFIG being equal to or below a second predetermined threshold, determining values of the stator voltage of the DFIG, the rotor voltage of the DFIG and the stator current of the DFIG, or quantities indicative thereof; and

calculating a stator leakage inductance of the DFIG on the basis of at least the determined values of the stator voltage of the DFIG, the rotor voltage of the DFIG and the stator current of the DFIG, or the quantities indicative thereof.

2 . The method of claim 1 , wherein, as per alternative a), the rotor leakage inductance of the DFIG is calculated on the basis of the determined values of the stator voltage of the DFIG, the rotor voltage of the DFIG and the rotor current of the DFIG, or the quantities indicative thereof, and a rotor resistance of the DFIG, or a quantity indicative thereof.

3 . The method of claim 1 , wherein, as per alternative b), the stator leakage inductance of the DFIG is calculated on the basis of the determined values of the stator voltage of the DFIG, the rotor voltage of the DFIG and the stator current of the DFIG, or the quantities indicative thereof, and a stator resistance of the DFIG, or a quantity indicative thereof.

4 . The method of claim 1 , wherein, during the operation of the DFIG, a stator of the DFIG is synchronized with an AC network connected to the stator of the DFIG.

5 . The method of claim 1 , wherein, during the operation of the DFIG, the stator voltage of the DFIG is within a nominal voltage range of the stator voltage of the DFIG.

6 . The method of claim 1 , wherein the rotor voltage of the DFIG is controlled with an inverter connected to a rotor of the DFIG.

7 . A computer program product comprising computer program code embodied on a non-transitory computer readable medium, wherein execution of the program code in a computer causes the computer to carry out the steps of the method according to claim 1 .

8 . An arrangement for determining leakage inductances of a double fed induction generator, DFIG, the arrangement comprising at least one of a) and b):

a) means configured, during operation of the DFIG, to control a rotor voltage of the DFIG such that a stator current of the DFIG approaches zero;

means configured to, in response to the stator current of the DFIG being equal to or below a first predetermined threshold, determine values of a stator voltage of the DFIG, a rotor voltage of the DFIG and a rotor current of the DFIG, or quantities indicative thereof; and

means configured to calculate a rotor leakage inductance of the DFIG on the basis of at least the determined values of the stator voltage of the DFIG, the rotor voltage of the DFIG and the rotor current of the DFIG, or the quantities indicative thereof,

b) means configured, during operation of the DFIG, to control a rotor voltage of the DFIG such that the rotor current of the DFIG approaches zero;

means configured to, in response to the rotor current of the DFIG being equal to or below a second predetermined threshold, determine values of the stator voltage of the DFIG, the rotor voltage of the DFIG and the stator current of the DFIG, or quantities indicative thereof; and

means configured to calculate a stator leakage inductance of the DFIG on the basis of at least the determined values of the stator voltage of the DFIG, the rotor voltage of the DFIG and the stator current of the DFIG, or the quantities indicative thereof.

9 . The arrangement of claim 8 , wherein, as per alternative a), the means configured to calculate are configured to calculate the rotor leakage inductance of the DFIG on the basis of the determined values of the stator voltage of the DFIG, the rotor voltage of the DFIG and the rotor current of the DFIG, or the quantities indicative thereof, and a rotor resistance of the DFIG or a quantity indicative thereof.

10 . The arrangement of claim 8 , wherein, as per alternative b), the means configured to calculate are configured to calculate the stator leakage inductance of the DFIG on the basis of the determined values of the stator voltage of the DFIG, the rotor voltage of the DFIG and the stator current of the DFIG, or the quantities indicative thereof, and a stator resistance of the DFIG or a quantity indicative thereof.

11 . The arrangement of claim 8 , wherein, during the operation of the DFIG, a stator of the DFIG is synchronized with an AC network connected to the stator of the DFIG.

12 . The arrangement of claim 8 , wherein, during the operation of the DFIG, the stator voltage of the DFIG is within a nominal voltage range of the stator voltage of the DFIG.

13 . An inverter comprising an arrangement according to claim 8 .

14 . An inverter according to claim 13 , wherein the inverter is configured to use the determined rotor leakage inductance of the DFIG and/or the determined stator leakage inductance of the DFIG for controlling the DFIG.

15 . An arrangement for determining leakage inductances of a double fed induction generator, DFIG, the arrangement comprising a processor and a memory storing instructions that, when executed by the processor, cause the arrangement to, during operation of the DFIG, to perform at least one of a) and b):

a) control a rotor voltage of the DFIG such that a stator current of the DFIG approaches zero;

in response to the stator current of the DFIG being equal to or below a first predetermined threshold, determine values of a stator voltage of the DFIG, a rotor voltage of the DFIG and a rotor current of the DFIG, or quantities indicative thereof; and

calculate a rotor leakage inductance of the DFIG on the basis of at least the determined values of the stator voltage of the DFIG, the rotor voltage of the DFIG and the rotor current of the DFIG, or the quantities indicative thereof,

b) control a rotor voltage of the DFIG such that the rotor current of the DFIG approaches zero;

in response to the rotor current of the DFIG being equal to or below a second predetermined threshold, determine values of the stator voltage of the DFIG, the rotor voltage of the DFIG and the stator current of the DFIG, or quantities indicative thereof; and

calculate a stator leakage inductance of the DFIG on the basis of at least the determined values of the stator voltage of the DFIG, the rotor voltage of the DFIG and the stator current of the DFIG, or the quantities indicative thereof.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 19, 2018
From: ABB OY
To: ABB SCHWEIZ AG
Reel/Frame 047801/0174 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 24, 2016
From: MELIN, TOMAS; VIRTANEN, REIJO KALEVI
To: ABB OY
Reel/Frame 038093/0128 →