Investigation of a Special Transformer Winding Model for the Interpretation of FRA Measurements

Research output: Chapter in book/report/conference proceedingConference contributionResearchpeer review

Authors

  • Sahand Seifi
  • Peter Werle
  • Hossein Mohseni
  • Amir Abbas Shayegani Akmal
  • Younes Norouzi

External Research Organisations

  • University of Tehran
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Details

Original languageEnglish
Title of host publicationVDE-Fachtagung Hochspannungstechnik 2018
Pages314-319
Number of pages6
ISBN (electronic)9783800748075
Publication statusPublished - 2018
EventVDE-Fachtagung Hochspannungstechnik 2018 - VDE Conference on High Voltage Technology 2018 - Berlin, Germany
Duration: 12 Nov 201814 Nov 2018

Abstract

Frequency Response Analysis (FRA) measurements on a transformer is an effective method to detect deformation of the windings. Various publications have attempted to use this method in different ways to detect or localize the deformation. Some of them have tried to obtain a detailed model of the winding using the FRA measurement to assess the deformation. On the other hand, the detailed model could also be used for finding the sectional winding transfer functions (SWTFs), which were needed for electrical PD localization methods. Although for both applications the detailed model of windings is necessary, the influence of different parameters of the detailed model on FRA measurements could be different and their importance are not same. There are various connections for FRA measurements, which are more sensitive to some specific parameters. Hence, a comprehensive study on the sensitivity of different parameters of the transformer detailed model is conducted in this contribution.

ASJC Scopus subject areas

Cite this

Investigation of a Special Transformer Winding Model for the Interpretation of FRA Measurements. / Seifi, Sahand; Werle, Peter; Mohseni, Hossein et al.
VDE-Fachtagung Hochspannungstechnik 2018. 2018. p. 314-319.

Research output: Chapter in book/report/conference proceedingConference contributionResearchpeer review

Seifi, S, Werle, P, Mohseni, H, Shayegani Akmal, AA & Norouzi, Y 2018, Investigation of a Special Transformer Winding Model for the Interpretation of FRA Measurements. in VDE-Fachtagung Hochspannungstechnik 2018. pp. 314-319, VDE-Fachtagung Hochspannungstechnik 2018 - VDE Conference on High Voltage Technology 2018, Berlin, Germany, 12 Nov 2018.
Seifi, S., Werle, P., Mohseni, H., Shayegani Akmal, A. A., & Norouzi, Y. (2018). Investigation of a Special Transformer Winding Model for the Interpretation of FRA Measurements. In VDE-Fachtagung Hochspannungstechnik 2018 (pp. 314-319)
Seifi S, Werle P, Mohseni H, Shayegani Akmal AA, Norouzi Y. Investigation of a Special Transformer Winding Model for the Interpretation of FRA Measurements. In VDE-Fachtagung Hochspannungstechnik 2018. 2018. p. 314-319
Seifi, Sahand ; Werle, Peter ; Mohseni, Hossein et al. / Investigation of a Special Transformer Winding Model for the Interpretation of FRA Measurements. VDE-Fachtagung Hochspannungstechnik 2018. 2018. pp. 314-319
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abstract = "Frequency Response Analysis (FRA) measurements on a transformer is an effective method to detect deformation of the windings. Various publications have attempted to use this method in different ways to detect or localize the deformation. Some of them have tried to obtain a detailed model of the winding using the FRA measurement to assess the deformation. On the other hand, the detailed model could also be used for finding the sectional winding transfer functions (SWTFs), which were needed for electrical PD localization methods. Although for both applications the detailed model of windings is necessary, the influence of different parameters of the detailed model on FRA measurements could be different and their importance are not same. There are various connections for FRA measurements, which are more sensitive to some specific parameters. Hence, a comprehensive study on the sensitivity of different parameters of the transformer detailed model is conducted in this contribution.",
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Download

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AU - Seifi, Sahand

AU - Werle, Peter

AU - Mohseni, Hossein

AU - Shayegani Akmal, Amir Abbas

AU - Norouzi, Younes

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PY - 2018

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N2 - Frequency Response Analysis (FRA) measurements on a transformer is an effective method to detect deformation of the windings. Various publications have attempted to use this method in different ways to detect or localize the deformation. Some of them have tried to obtain a detailed model of the winding using the FRA measurement to assess the deformation. On the other hand, the detailed model could also be used for finding the sectional winding transfer functions (SWTFs), which were needed for electrical PD localization methods. Although for both applications the detailed model of windings is necessary, the influence of different parameters of the detailed model on FRA measurements could be different and their importance are not same. There are various connections for FRA measurements, which are more sensitive to some specific parameters. Hence, a comprehensive study on the sensitivity of different parameters of the transformer detailed model is conducted in this contribution.

AB - Frequency Response Analysis (FRA) measurements on a transformer is an effective method to detect deformation of the windings. Various publications have attempted to use this method in different ways to detect or localize the deformation. Some of them have tried to obtain a detailed model of the winding using the FRA measurement to assess the deformation. On the other hand, the detailed model could also be used for finding the sectional winding transfer functions (SWTFs), which were needed for electrical PD localization methods. Although for both applications the detailed model of windings is necessary, the influence of different parameters of the detailed model on FRA measurements could be different and their importance are not same. There are various connections for FRA measurements, which are more sensitive to some specific parameters. Hence, a comprehensive study on the sensitivity of different parameters of the transformer detailed model is conducted in this contribution.

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