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Turbine generator rotor interturn short-circuit fault diagnosis method based on end distortion effect

An inter-turn short-circuit fault, steam turbine generator technology, applied in the direction of measuring electricity, measuring electrical variables, measuring devices, etc., can solve problems such as unsatisfactory results, and achieve convenient installation, broad application prospects, and high diagnostic sensitivity. Effect

Inactive Publication Date: 2014-04-09
NORTH CHINA ELECTRIC POWER UNIV (BAODING)
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Problems solved by technology

[0007] In a word, although the online detection of inter-turn short-circuit faults of rotor windings is paid great attention at home and abroad, the existing methods are still subject to certain restrictions in application, and the results obtained in actual tests are not very ideal. It is not uncommon for cases of inter-turn short circuit failure to be detected in time and cause serious consequences, so it is necessary to further improve the diagnosis level of such faults

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  • Turbine generator rotor interturn short-circuit fault diagnosis method based on end distortion effect
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  • Turbine generator rotor interturn short-circuit fault diagnosis method based on end distortion effect

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Embodiment Construction

[0045] Due to various reasons such as manufacturing, installation, and operation of large turbogenerators, geometric asymmetry cannot be completely avoided and eliminated, such as eccentricity, unequal gap lengths when stator core pieces are stacked, and stator core deformation.

[0046] When establishing the air gap permeance model of the turbogenerator, the air gap permeance changes caused by various asymmetric factors are taken into account, and the air gap permeance model expression of the turbogenerator is as follows:

[0047] (1)

[0048] The excitation magnetomotive force of the turbogenerator is a space ladder wave, which only contains odd harmonics after Fourier decomposition, and the armature reaction magnetomotive force only contains 1, 5, 7, 11 after Fourier decomposition and other odd-numbered harmonics, so the air-gap synthetic magnetomotive force only contains odd-numbered harmonics, which can be expressed as:

[0049] ...

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Abstract

The invention discloses a turbine generator rotor interturn short-circuit fault diagnosis method based on the end distortion effect. The method includes the steps of firstly, installing a magnetic field detection coil on an end distortion magnetic flux path of a turbine generator; secondly, online collecting voltage signals sensed by the magnetic field detecting coil through a data collecting instrument, conducting fast fourier transformation on the signals, and obtaining a spectrogram of the signals; thirdly, diagnosing whether the interturn short-circuit fault exists in rotor windings of the turbine generator or not according to the amplitude changing situation of all spectrum components of the signals. The interturn short-circuit fault in the rotor windings of the turbine generator is diagnosed according to the amplitude changing situation of some characteristic frequency components in the voltage signals sensed by the magnetic field detecting coil, and the turbine generator rotor interturn short-circuit fault diagnosis method has the advantages that diagnosing flexibility is high and sensors are convenient to install, is universally suitable for various types of turbine generators in an electric system, and has wide application prospects.

Description

technical field [0001] The invention relates to a method capable of diagnosing on-line whether there is an inter-turn short-circuit fault in the rotor winding of a synchronous motor, which belongs to the technical field of generators. Background technique [0002] Rotor winding turn-to-turn short-circuit fault is a common fault type of large turbogenerators. The relatively minor rotor winding turn-to-turn short-circuit fault usually does not pose a threat to the operation of the unit, but experience shows that if the fault cannot be found and dealt with in time, the generator Sick operation may further cause serious faults, such as one-point grounding, two-point grounding, and magnetization of the large shaft of the turbogenerator rotor. Although the manufacturing technology of large-scale turbogenerators is constantly developing and improving, the failure rate of inter-turn short circuit of the rotor winding does not show a clear downward trend, but has an upward trend, esp...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G01R31/06
Inventor 武玉才李永刚李和明
Owner NORTH CHINA ELECTRIC POWER UNIV (BAODING)
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