Partial Discharge Analysis on Isolator of Transformer

Transformer has an important role in the world of electricity, especially high voltage. The selection of transformer isolation and routine maintenance should be in the same direction to maintain the reliability of transformer performance and work safety. Partial discharge is caused by many factors,...

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Main Authors: Antonov Bachtiar, Thomas Thomas
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:MATEC Web of Conferences
Online Access:https://doi.org/10.1051/matecconf/201821501019
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spelling doaj-b9d94b8ce7554a0ebfe3a6058f0582982021-02-02T08:18:41ZengEDP SciencesMATEC Web of Conferences2261-236X2018-01-012150101910.1051/matecconf/201821501019matecconf_ictis2018_01019Partial Discharge Analysis on Isolator of TransformerAntonov BachtiarThomas ThomasTransformer has an important role in the world of electricity, especially high voltage. The selection of transformer isolation and routine maintenance should be in the same direction to maintain the reliability of transformer performance and work safety. Partial discharge is caused by many factors, both from the transformer itself, breakdown voltage and the use of an old transformer. The external factor is the temperature around the transformer which results in a decrease in the reliability of the insulator. Both must be based on a standard. As technology advances, in the field of electrical, electronics, computerization has a standard called IEEE Std C57.104 ™ -2008 which is a revision of IEEE Std C57.104-1991. It is designed for science and technology guidance concerning all provisions concerning the security of the worker itself. Which later, by applying the standard is expected transformer service users can suppress loss of production and work accidents. Indication of occurrence of Partial discharge (PD) occurs in transformer at MCC CLO2 (transformer 1) where TDCG 25975 ppm and transformer EN-2M also occur Partial Discharge (transformer 2) with TDCG 5920.6 ppm, while at transformer VE-12 (transformer 3) is still in normal condition where the TDCG value is only 630 ppm. If the Partial Discharge is fatal and damaging the transformer, replacement of the transformer should be done immediately. But the condition of the field not be done directly because of many stages to be done, which directly affect the production process and costs.https://doi.org/10.1051/matecconf/201821501019
collection DOAJ
language English
format Article
sources DOAJ
author Antonov Bachtiar
Thomas Thomas
spellingShingle Antonov Bachtiar
Thomas Thomas
Partial Discharge Analysis on Isolator of Transformer
MATEC Web of Conferences
author_facet Antonov Bachtiar
Thomas Thomas
author_sort Antonov Bachtiar
title Partial Discharge Analysis on Isolator of Transformer
title_short Partial Discharge Analysis on Isolator of Transformer
title_full Partial Discharge Analysis on Isolator of Transformer
title_fullStr Partial Discharge Analysis on Isolator of Transformer
title_full_unstemmed Partial Discharge Analysis on Isolator of Transformer
title_sort partial discharge analysis on isolator of transformer
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2018-01-01
description Transformer has an important role in the world of electricity, especially high voltage. The selection of transformer isolation and routine maintenance should be in the same direction to maintain the reliability of transformer performance and work safety. Partial discharge is caused by many factors, both from the transformer itself, breakdown voltage and the use of an old transformer. The external factor is the temperature around the transformer which results in a decrease in the reliability of the insulator. Both must be based on a standard. As technology advances, in the field of electrical, electronics, computerization has a standard called IEEE Std C57.104 ™ -2008 which is a revision of IEEE Std C57.104-1991. It is designed for science and technology guidance concerning all provisions concerning the security of the worker itself. Which later, by applying the standard is expected transformer service users can suppress loss of production and work accidents. Indication of occurrence of Partial discharge (PD) occurs in transformer at MCC CLO2 (transformer 1) where TDCG 25975 ppm and transformer EN-2M also occur Partial Discharge (transformer 2) with TDCG 5920.6 ppm, while at transformer VE-12 (transformer 3) is still in normal condition where the TDCG value is only 630 ppm. If the Partial Discharge is fatal and damaging the transformer, replacement of the transformer should be done immediately. But the condition of the field not be done directly because of many stages to be done, which directly affect the production process and costs.
url https://doi.org/10.1051/matecconf/201821501019
work_keys_str_mv AT antonovbachtiar partialdischargeanalysisonisolatoroftransformer
AT thomasthomas partialdischargeanalysisonisolatoroftransformer
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