IP Library › Patent Application 13613721
Patent Application
App. No. 13/613,721

DETECTION OF GENERATOR STATOR INTER-CIRCUIT FAULTS

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Quick Facts
Patent No.
US None
App. No.
13/613,721
Abstract

Aspects of the invention provide a system and method for detecting inter-circuit faults within a generator stator. In one embodiment, a computer system includes: a sampler for sampling phase voltages and phase currents of a generator stator; a plurality of pre-defined blocks for enabling, based on the sampled phase voltages and currents, an inter-circuit fault detection scheme; a level detection block for determining, in response to the enabled inter-circuit fault detection scheme, a plurality of differences between the sampled phase voltages; and a comparison logic device for comparing, in response to the enabled inter-circuit fault detection scheme, each of the differences of the sampled phase voltages and determining, based on the differences, an inter-circuit fault within at least one phase of the generator stator. The system may also include a negative sequence voltage block for detection of inter-circuit fault within a generator stator.

Claims (34)

1 . A computer system, comprising:

a sampler for sampling phase voltages and phase currents of a generator stator;

a plurality of pre-defined blocks for enabling, based on the sampled phase voltages and currents, an inter-circuit fault detection scheme;

a level detection block for determining, in response to the enabled inter-circuit fault detection scheme, a plurality of differences between the sampled phase voltages; and

a comparison logic device for comparing, in response to the enabled inter-circuit fault detection scheme, each of the differences of the sampled phase voltages and determining, based on the differences, an inter-circuit fault within at least one phase of the generator stator.

2 . The system of claim 1 , further comprising a negative sequence over-voltage block for determining, based on the sampled phase voltages, a negative sequence voltage and determining if the negative sequence voltage is greater than a threshold.

3 . The system of claim 1 , wherein the level detection block further includes: comparing the sampled phase voltages, and determining if an unbalance between the sampled phase voltages is within a pre-defined limit.

4 . The system of claim 1 , wherein the plurality of pre-defined blocks includes a directional element for determining, based on the sampled phase voltages and currents, if a fault is within the generator stator.

5 . The system of claim 1 , wherein the plurality of pre-defined blocks includes a ground fault de-sensitizer for determining, based on the sampled phase voltages, if a fault is a ground fault.

6 . The system of claim 1 , wherein the plurality of pre-defined blocks includes a phase-to-phase fault de-sensitizer for determining, based on the sampled phase voltages, if a fault is a phase-phase fault.

7 . A computer program comprising program code embodied in at least one computer-readable medium, which when executed, enables a computer system to implement a method of detecting inter-circuit faults within a generator stator, the method comprising:

sampling phase voltages of the generator stator;

sampling phase currents of the generator stator;

enabling, based on the sampled phase voltages and currents, an inter-circuit fault detection scheme;

determining, in response to the enabling, a plurality of differences between the sampled phase voltages; and

comparing, in response to the enabling, each of the differences of the sampled phase voltages and determining, based on the differences, an inter-circuit fault within at least one phase of the generator stator.

8 . The computer program of claim 7 , further comprising determining a negative sequence voltage, based on the sampled phase voltages, and determining if the negative sequence voltage is higher than a threshold.

9 . The computer program of claim 7 , further comprising comparing the sampled phase voltages, and determining if an unbalance between the sampled phase voltages is within a pre-defined limit.

10 . The computer program of claim 9 , wherein comparing each of the differences of the sampled phase voltages is further in response to determining that the balance between the sampled phase voltages is within the pre-defined limit.

11 . The computer program of claim 7 , further comprising filtering, using a timer block, to ensure isolation of a generator under a sustained inter-circuit fault.

12 . The computer program of claim 7 , wherein enabling the inter-circuit fault detection scheme further comprises: determining, based on the sampled phase voltages and current, if a fault is within the generator stator.

13 . The computer program of claim 7 , wherein enabling the inter-circuit fault detection scheme further comprises: determining, based on the sampled phase voltages, if a fault is a ground fault.

14 . The computer program of claim 7 , wherein enabling the inter-circuit fault detection scheme further comprises: determining, based on the sampled phase voltages, if a fault is a phase-phase fault.

15 . A computer-implemented method for detecting inter-circuit faults within a generator stator, the method comprising:

sampling phase voltages of the generator stator;

sampling phase currents of the generator stator;

enabling, based on the sampled phase voltages and phase currents, an inter-circuit fault detection scheme;

determining, in response to the enabling, a plurality of differences between the sampled RMS phase voltages; and

comparing, in response to the enabling, each of the differences of the sampled phase voltages and determining, based on the differences, an inter-circuit fault within at least one phase of the generator stator.

16 . The computer-implemented method of claim 15 , further comprising determining a negative sequence voltage, based on the sampled phase voltages, and determining if the negative sequence voltage is higher than a threshold.

17 . The computer-implemented method of claim 15 , further comprising comparing the sampled phase voltages, and determining if an unbalance between the sampled phase voltages is within a pre-defined limit.

18 . The computer-implemented method of claim 15 , wherein enabling the inter-circuit fault detection scheme further comprises: determining, based on the sampled phase voltages and current, if a fault is within the generator stator.

19 . The computer-implemented method of claim 15 , wherein enabling the inter-circuit fault detection scheme further comprises: determining, based on the sampled phase voltages, if a fault is a ground fault.

20 . The computer-implemented method of claim 15 , wherein enabling the inter-circuit fault detection scheme further comprises: determining, based on the sampled phase voltages, if a fault is a phase-phase fault.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 13, 2012
From: SOM, SHANTANU; BUKHALA, ZEEKY ASHIONO
To: GENERAL ELECTRIC COMPANY
Reel/Frame 028954/0598 →