IP Library Granted Patent US 8,373,293
Granted Patent B2
US 8,373,293 · App. 13/090,420 · Granted Feb 12, 2013

Protection system of a doubly-fed induction machine

Inventors: Stephan Engelhardt (Sonsbeck, DE); Lars Kock (Krefeld, DE)
Assignee: Woodward Kempen GmbH
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Quick Facts
Patent No.
US 8,373,293
App. No.
13/090,420
Granted
Feb 12, 2013
Kind
B2
Abstract

A protection system for a doubly-fed induction machine; with a stator and a rotor. The stator of the doubly-fed induction machine is connected to a grid, and the rotor of the doubly-fed induction machine is connected to the grid via a converter. The converter includes a machine side converter, and a DC-link and a line side converter. The protection system also includes at least one crowbar, the crowbar being connected to the rotor, at least one DC-chopper provided in the DC-link, a converter controller, and a separate protection device for DC-chopper and the at least one crowbar.

Claims (46)

1. Protection system of a doubly-fed induction machine, the system comprises a doubly-fed induction machine ( 1 ) with a stator ( 2 ) and a rotor ( 3 ), the stator ( 2 ) of said doubly-fed induction machine ( 1 ) is connected to a grid ( 4 ) and the rotor ( 3 ) of said doubly-fed induction machine ( 1 ) is connected to the grid ( 4 ) via a converter ( 5 ), said converter ( 5 ) comprises a machine side converter ( 6 ), a direct-current(DC)-link ( 7 ) and a line side converter ( 8 ), the system comprises additionally at least one crowbar ( 10 ), said crowbar ( 10 ) is connected to the rotor ( 3 ), at least one direct-current(DC)-chopper ( 12 ) provided in the DC-link ( 7 ), a converter controller ( 9 ) and a separate protection device ( 11 )

wherein,

the DC-chopper ( 12 ) and the crowbar ( 10 ) are controlled by the separate protection device ( 11 ).

2. Protection system of claim 1 ,

wherein,

the protection device ( 11 ) comprises means ( 14 , 15 ) to measure a voltage of the DC-link ( 7 ), and means ( 17 ) to start and stop operation of the DC-chopper ( 12 ) depending at least on the measured voltage and means ( 16 ) to start operation of the crowbar ( 10 ).

3. Protection system of claim 1 ,

wherein,

the protection device ( 11 ) comprises a counter to count firing pulses of the DC-chopper ( 12 ) and/or means to measure an operating time of the DC-chopper ( 12 ).

4. Protection system of claim 1 ,

wherein,

the protection device ( 11 ) comprises output units capable of providing control signals for the DC-chopper ( 12 ) and/or the crowbar ( 10 ) using fiber optics ( 16 , 17 ).

5. Protection system of claim 1 ,

wherein,

the converter controller ( 9 ) comprises means ( 29 ) to control a switch unit ( 28 a , 28 b ) to disconnect the doubly-fed induction machine ( 1 ) from the grid ( 4 ).

6. Protection system of claim 1 ,

wherein,

the converter controller ( 9 ) comprises means to calculate a current of the crowbar ( 10 ) using an estimated rotor current and current measured at the machine side converter.

7. Protection system of claim 1 ,

wherein,

the crowbar ( 10 ) comprises thyristors with optional resistors.

8. Protection system of claim 1 ,

wherein,

a switch-off unit ( 28 a, 28 b) comprises switches arranged in the line side converter path and the stator circuit or arranged in a common connection of line side converter path and stator circuit with the grid ( 4 ).

9. Wind park comprising at least one wind power station with a protection system according to claim 1 .

10. Method to protect a doubly-fed induction machine wherein a stator of the doubly-fed induction machine is connected to a grid, a rotor of the doubly-fed induction machine is connected to the grid via a converter, which converter consists at least of a machine side converter, a DC-link and a line side converter, additionally at least one crowbar, at least one DC-chopper in the DC-link, a converter controller and a separate protection device

wherein,

the separate protection device controls operation of the crowbar and the DC-chopper.

11. The method of claim 10 ,

wherein,

the protection device counts firing pulses of the DC-chopper or measures an operating time of the DC-chopper.

12. The method of claim 10 ,

wherein,

a minimum switch-off time of the DC-chopper depends on a number of firing pulses or the amount of operating time in a previous operating cycle of the DC-chopper.

13. The method of claim 10 ,

wherein,

the converter controller controls a switch-unit to switch off the doubly-fed induction machine from the grid.

14. The method of claim 10 ,

wherein,

the converter controller estimates a rotor current by using a machine model of the doubly-fed induction machine and measured values of a stator voltage, a stator current and an angle between stator and rotor voltage, whereas a crowbar current is determined from a difference of the estimated rotor current and a measured machine side converter current.

15. The method of claim 10 ,

wherein,

the doubly-fed induction machine is switched-off from the grid by the converter controller if a critical load of the crowbar is determined by calculating an integral of I 2 t over time with I as crowbar current and t as switch-on time.

16. The method of claim 10 ,

wherein,

the protection device measures a DC-link voltage and starts an operation of the DC-chopper depending on threshold values for the DC-link voltage.

Assignments (3)
CORRECTIVE ASSIGNMENT TO CORRECT THE THE NATURE OF CONVEYANCE AND ADD EFFECTIVE DATE OF JULY 20, 2020 PREVIOUSLY RECORDED ON REEL 054347 FRAME 0204. ASSIGNOR(S) HEREBY CONFIRMS THE NUNC PRO TUNC ASSIGNMENT. Recorded Nov 19, 2020
From: WOODWARD KEMPEN GMBH
To: CONVERTERTEC DEUTSCHLAND GMBH
Reel/Frame 054477/0942 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 12, 2020
From: WOODWARD KEMPEN GMBH
To: CONVERTERTEC DEUTSCHLAND GMBH
Reel/Frame 054347/0204 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 16, 2011
From: ENGELHARDT, STEPHAN; KOCK, LARS
To: WOODWARD KEMPEN GMBH
Reel/Frame 026287/0313 →
Continuity (2)
Continuation PCTEP2008064140 · Oct 20, 2008
Related Publication 20110210553A1 · Sep 1, 2011