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Open AccessJournal ArticleDOI

Influence of Aging on Creepage Discharge Characteristics of Oil-Paper Insulation Under AC-DC Combined Voltage

Jin Fubao, +2 more
- 09 Mar 2021 - 
- Vol. 9, pp 49016-49024
TLDR
In this paper, the authors proposed a sphere-plate electrode model to study the creepage discharge parameters and characteristic spectra of aged oil-paper subjected to AC-DC combined voltage.
Abstract
There is a relative lack of research on the development of creepage discharge in aged oil-paper insulation subjected to AC-DC combined voltage in converter transformers. In this study, based on the physical and chemical properties of oil-paper, we propose a sphere-plate electrode model to study the creepage discharge parameters and characteristic spectra of aged oil-paper subjected to AC-DC combined voltage. The results show that the creepage discharge inception voltage of aged oil-paper is related to the AC voltage component of the AC-DC combined voltage. However, when the DC voltage component is 60 kV, the flashover phenomenon was found to occur in one of the severely aged samples before the AC voltage was applied. Despite being subjected to the same DC voltage, the flashover phenomenon did not occur in three other samples aged to different degrees. Large-amplitude discharges were found to appear earlier in the severely aged samples. At the same creepage discharge stage, as the aging time of the oil-paper increased, the number of large-amplitude discharges was found to rapidly increase, and the time interval between adjacent discharges was found to gradually decrease. At each stage of the creepage discharge, the small-amplitude discharge has a “hump” shaped distribution. The larger the DC voltage component, the shorter the endurance time of aged oil-paper, and the more severe the damage to the oil-paper. The DC voltage component was found to have an accelerating effect on the development of creepage discharge in aged oil-paper insulation.

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Citations
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Proceedings ArticleDOI

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References
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Journal ArticleDOI

Investigation of polarization and depolarization current measurements for the assessment of oil-paper insulation of aged transformers

TL;DR: In this article, the polarization and depolarization current (PDC) analysis is used for determining the conductivity and moisture content of insulation materials in a transformer, which is a non-destructive dielectric testing method.
Journal ArticleDOI

Creepage discharge on insulation barriers in aged power transformers

TL;DR: In this paper, the authors used point-to-plate electrode configurations under AC voltages for both single flashover breakdown and partial discharge induced failure modes, and found that increased moisture content in pressboard reduces partial discharge inception voltage (PDIV) significantly, i.e. ~30% PDIV reduction for pressboard of up to 3% moisture.
Journal ArticleDOI

Investigation on dielectric response characteristics of thermally aged insulating pressboard in vacuum and oil-impregnated ambient

TL;DR: In this paper, a series of experiments are designed and carried out in a well-controlled laboratory, where accelerated thermal aging is performed on oil-immersed pressboard samples with different time intervals (0, 120, 250 and 400 h).
Journal ArticleDOI

Diagnostic of HVDC systems using partial discharges

TL;DR: In this article, a methodology for the diagnosis of HVDC systems based on partial discharge analysis is presented, with the aim of providing tools enabling automatic identification of the type of PD, as well as noise and disturbance rejection, for on-line and/or off-line PD testing of HVAC equipments.
Journal ArticleDOI

Partial discharge characteristics of oil-immersed insulation systems under DC, combined AC-DC and DC reversed polarity voltage

TL;DR: In this paper, a numerical dc field mapping method for electric field analysis of two-dimensional configurations which consist of composite insulation and field mapping methods under combined ac-dc voltage and dc reversed polarity voltage were proposed.
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