| Title: | Digital current differential system | ||
| Application Number: | 01121081 | Application Date: | 1997.09.12 |
| Publication Number: | 1378087 | Publication Date: | 2002.11.06 |
| Approval Pub. Date: | 2004.11.24 | Granted Pub. Date: | 2004.11.24 |
| International Classifi-cation: | G01R19/10 | ||
| Applicant(s) Name: | General Electric Co. | Address: | |
| Inventor(s) Name: | M.G. Adamilk;G.E. Alersandl;E.T. Solnil | ||
| Attorney & Agent: | chen jingjun | ||
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Abstract: |
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| A method of detecting faults on a power transmission line system includes simultaneously measuring phase current samples at each phase of each transmission terminal; calculating real and imaginary phaselets comprising partial sums of the phase current samples; for each phaselet, calculating a respective partial sum of squares of each phase current sample; calculating the sums of the real and imaginary phaselets over a variable size sliding sample window; calculating real and imaginary phasor components from the phaselets and a sum of the partial sums of the squares over the sample window; using the sums of the real and imaginary phaselets, the real and imaginary phasor components, and the sum of the partial sums of the squares to calculate a sum of squares of errors between the phase current samples and a fitted sine wave representative of the real and imaginary phasor components; using the sum of squares of errors to calculate a variance matrix defining an elliptical uncertainty region; determining whether a disturbance has occured, and, if so, re-initializing the sample window; and determining whether a sum of current phasors from each terminal for a respective phase falls outside of the elliptical uncertainty region for the respective phase. | |||
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| Time: | 24 | ||
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