Claims
- 1. A partial discharge detecting method comprising the steps of: inputting a partial discharge signal resulting from a partial discharge of an insulated device from an input terminal; determining an intensity in which said partial discharge signal is expanded for each frequency by an FFT or a spectral analyzer to select a plurality of different specific frequencies from frequencies having high intensities, detecting the intensity of each frequency of said partial discharge signal to select a plurality of specific frequencies, of which the intensities exceed a predetermined value, or selecting the frequency having the highest intensity from the specific frequencies; preparing detection data from the partial discharge signal which are given periodic elements at a specific frequency selected; and processing at least one of said detection data or displaying the detection data on a screen to detect the partial discharge.
- 2. A partial discharge detecting method according to claim 1, wherein an extent or kind of abnormality, deterioration, or lifetime of the insulated device is diagnosed by processing said detection data by a neuro computer method or by a finger printing method.
- 3. A partial discharge detecting method comprising the steps of: inputting a partial discharge signal of an insulated device from an input terminal; preparing detection data from the partial discharge signal such that a plurality of different specific frequencies of the partial discharge signal are given periodic elements; preparing sampling data by differentiating either averaged data averaged from detection data of different frequencies or known data from the individual detection data, or by differentiating the intensities of the detection data detected by antennas provided in different positions of the insulated device, between identical frequencies; and diagnosing an extent of abnormality, a deterioration or a lifetime of the device from the pattern or the intensities of the prepared sampling data.
- 4. An insulated device diagnosing system comprising: a plurality of antennas provided in an insulated device; a pattern generator for receiving partial discharge signals, resulting from a partial discharge in the insulated device, from said antennas, and preparing detection data from the partial discharge signals such that periodic elements are given to a plurality of different specific frequencies of the partial discharge signals; a neuro computer or a finger printing method operation unit for processing the detection data prepared by said pattern generator; and a judgment unit for diagnosing the extent of abnormality, a deterioration or a lifetime of said device from the operation result of said neuro computer or finger printing method operation unit;wherein said insulated device is a gas insulated breaker; wherein said partial discharge signals come from said plurality of antennas, which are provided at different positions in said gas insulated device, and said partial discharge signals are measured synchronously; and wherein the partial discharge is located from the spectral patterns or intensity ratios of said detection data between the same frequencies.
- 5. An insulated device diagnosing system comprising: a plurality of antennas provided in an insulated device; a pattern generator for receiving partial discharge signals, resulting from a partial discharge of the insulated device, from said antennas, and preparing detection data from the partial discharge signals such that periodic elements are given to a plurality of different specific frequencies of the partial discharge signals; a neuro computer or a finger printing method operation unit for processing the detection data prepared by said pattern generator; and a judgment unit for diagnosing the extent of abnormality, a deterioration or a lifetime of said device from the operation result of said neuro computer or finger printing method operation unit;wherein a distribution of frequency components of the partial discharge signals is also measured for specifying the different specific frequencies to be detected; and wherein said insulated device is a gas insulated breaker; wherein said partial discharge signals come from said plurality of antennas, which are provided at different positions in said gas insulated device, and said partial discharge signals are measured synchronously; and wherein the partial discharge is located from the spectral patterns or intensity ratios of said detection data between the same frequencies.
Priority Claims (1)
Number |
Date |
Country |
Kind |
8-328192 |
Dec 1996 |
JP |
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Parent Case Info
This is a continuation application of U.S. Ser. No. 08/986,618, filed Dec. 8, 1997, now U.S. Pat. No. 5,982,181.
US Referenced Citations (10)
Foreign Referenced Citations (2)
Number |
Date |
Country |
1-107174 |
Apr 1989 |
JP |
7-260868 |
Apr 1989 |
JP |
Continuations (1)
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Number |
Date |
Country |
Parent |
08/986618 |
Dec 1997 |
US |
Child |
09/372139 |
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US |