Method for partial discharge recognition in high voltage applications and unit using the method
A method for partial discharge recognition in high voltage applications and a high voltage unit using the method, includes the steps of detecting a signal, transforming the signal from time to frequency domain, cutting frequencies above a defined threshold, and retransform the truncated signal from frequency to time domain. The information content of detected and truncated signals is determined and compared.
1 . A method for partial discharge recognition in high voltage applications, comprising:
detecting, at a high voltage unit, a signal associated with a partial discharge event;
transforming, at a computing unit, the detected signal from time domain to frequency domain;
cutting off frequencies of the detected signal above a defined threshold resulting in a truncated signal;
retransforming the truncated signal from frequency domain to time domain;
determining, at a computing unit, an information content of the detected signal and an information content of the truncated signal; and
comparing the information content of the detected signal and the information content of the truncated signal to determine whether the detected signal includes partial discharge information, wherein the information content of the detected signal and the information content of the truncated signal are determined by a calculation of Shannon entropy.
2 . The method of claim 1 , wherein:
when the detected signal and the truncated signal have comparable information content, the detected signal is identified as noise, and
when the truncated signal has lower information content than the detected signal, the detected signal is identified as a signal including partial discharge information.
3 . The method of claim 1 ,
wherein the information content of the detected signals and the truncated signals are calculated, and the comparison of information content is performed by subtraction or division.
4 . The method of claim 1 ,
wherein the comparison of the information content of the detected signal and the truncated signal is performed in real time.
5 . The method of claim 1 ,
wherein the method steps are repeated over a fixed time period, to increase reliability of results.
6 . The method of claim 1 ,
wherein the detected signal comprises a voltage signal or a current signal.
7 . The method of claim 1 , further comprising:
producing an alarm signal when the detected signal is determined to include partial discharge information.
8 . The method of claim 1 , further comprising:
evaluating a value of the partial discharge by an iteration method;
deleting signals identified as noise.
9 . A high voltage unit using a method according to claim 1 for partial discharge recognition, the unit comprising:
an instrument transformer, a high voltage switch, a surge arrester, a bushing, and/or a medium or high voltage transformer.
10 . The high voltage unit according to claim 9 ,
wherein the unit comprises an isolator, or an isolator housing with rips on an outer surface.
11 . The high voltage unit according to claim 9 ,
wherein the unit is designed for voltages in a range of more than a kilovolt up to 1200 kV.
12 . The method according to claim 2 ,
identifying signals with equal information content of the detected signal and the truncated signal as noise.
13 . The method according to claim 4 ,
wherein determination and/or comparison of the information content of the detected signals and/or the truncated signals are performed in real time, automatically.
14 . The method according to claim 4 ,
wherein determination and/or comparison of the information content of the detected signals and/or the truncated signals are performed in real time, automatically, with a computer and/or online.
15 . The method according to claim 5 ,
wherein the method steps are repeated periodically over a fixed time period, to increase reliability of results.
16 . The method according to claim 7 ,
wherein the alarm signal is sent online via internet and/or mobile network.
17 . The high voltage unit according to claim 9 ,
wherein the unit is designed for voltages in a range of 15 kilovolt up to 1200 kV.
18 . The method of claim 1 , wherein signals above a cut-off frequency are identified as noise.