Digital technique for on-line measurement of dissipation factor of high voltage apparatus

To ensure the reliability of power supply it becomes necessary to periodically monitor the condition of power apparatus. Conventionally this may be achieved by carrying out tests such as the partial discharge and dissipation factor tests in a laboratory. This method, however, requires that the appar...

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Main Author: Zhang, Zhengkao
Language:en_US
Published: 2007
Online Access:http://hdl.handle.net/1993/1015
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spelling ndltd-LACETR-oai-collectionscanada.gc.ca-MWU.1993-10152014-03-29T03:40:59Z Digital technique for on-line measurement of dissipation factor of high voltage apparatus Zhang, Zhengkao To ensure the reliability of power supply it becomes necessary to periodically monitor the condition of power apparatus. Conventionally this may be achieved by carrying out tests such as the partial discharge and dissipation factor tests in a laboratory. This method, however, requires that the apparatus in question be disconnected from service and transported to the testing location. In the last few years on-line diagnostic tests have found favour not only because they are cost effective but also do not involve service interruption and furthermore offer the possibility of continuous monitoring. The reported methods measure the phase difference between voltage and current digitally by converting the signals to rectangular waveforms while preserving zero crossings. The method discussed in this paper uses a different technique. The Discrete Fourier Transform (DFT) is performed on the acquired analog signals; the phase difference is found from phase information of the fundamental quantities. This procedure effectively eliminates errors due to harmonics. It has an additional advantage in that the error introduced due to noisy data is smaller than that present in a method which relies on detection of zero crossings. The suggested method has been validated by comparison with the results obtained by a conventional bridge measurement. The effects of sampling rate and system frequency fluctuation on the measurement have also been studied. 2007-05-15T15:26:10Z 2007-05-15T15:26:10Z 1997-11-01T00:00:00Z http://hdl.handle.net/1993/1015 en_US
collection NDLTD
language en_US
sources NDLTD
description To ensure the reliability of power supply it becomes necessary to periodically monitor the condition of power apparatus. Conventionally this may be achieved by carrying out tests such as the partial discharge and dissipation factor tests in a laboratory. This method, however, requires that the apparatus in question be disconnected from service and transported to the testing location. In the last few years on-line diagnostic tests have found favour not only because they are cost effective but also do not involve service interruption and furthermore offer the possibility of continuous monitoring. The reported methods measure the phase difference between voltage and current digitally by converting the signals to rectangular waveforms while preserving zero crossings. The method discussed in this paper uses a different technique. The Discrete Fourier Transform (DFT) is performed on the acquired analog signals; the phase difference is found from phase information of the fundamental quantities. This procedure effectively eliminates errors due to harmonics. It has an additional advantage in that the error introduced due to noisy data is smaller than that present in a method which relies on detection of zero crossings. The suggested method has been validated by comparison with the results obtained by a conventional bridge measurement. The effects of sampling rate and system frequency fluctuation on the measurement have also been studied.
author Zhang, Zhengkao
spellingShingle Zhang, Zhengkao
Digital technique for on-line measurement of dissipation factor of high voltage apparatus
author_facet Zhang, Zhengkao
author_sort Zhang, Zhengkao
title Digital technique for on-line measurement of dissipation factor of high voltage apparatus
title_short Digital technique for on-line measurement of dissipation factor of high voltage apparatus
title_full Digital technique for on-line measurement of dissipation factor of high voltage apparatus
title_fullStr Digital technique for on-line measurement of dissipation factor of high voltage apparatus
title_full_unstemmed Digital technique for on-line measurement of dissipation factor of high voltage apparatus
title_sort digital technique for on-line measurement of dissipation factor of high voltage apparatus
publishDate 2007
url http://hdl.handle.net/1993/1015
work_keys_str_mv AT zhangzhengkao digitaltechniqueforonlinemeasurementofdissipationfactorofhighvoltageapparatus
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