Flashover Model of Polluted Medium Voltage AC Indoor Insulators Around Electric Arc Nickle Furnace Roof

Rustam Saleh*, Ali Musyafa, Doty Dewi Risanti, Ismail Hasan, Azhar

*Corresponding author for this work

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Abstract

This paper discusses a mathematical model of insulators on the roof beam of a medium-voltage furnace electrical network that is contaminated under critical conditions. It addresses a dynamic arc model of contaminated insulators, referring to the formulation of the Obenaus model concerning discharge propagation. Experiments were conducted using sample of G7 glass-silicone laminated, and Mica insulators that are installed on structural beams and the electrical network of a pyrometallurgical furnace with the aim of measuring flashover voltage and determining the arc parameters (n and N) of the polluted insulator. Several parameters in the dynamic model, including arc current, arc length, and arc resistance, are computed using MATLAB, incorporating the use of optimization algorithms to estimate n and N with several level of pollution and insulator types. The actual results of the proposed model are then compared with experimental findings, including comparisons with several previous studies, despite differences in voltage levels and variations in pollution layer resistances. The experimental and simulation findings indicate the medium voltage insulator's expected performance under different operating conditions per the IEC 60439 standard. The results show the feasibility of assessment of polluted material severity on different type insulators and flashover prediction, using the proposed model.

Original languageEnglish
Title of host publication2024 IEEE 4th International Conference in Power Engineering Applications
Subtitle of host publicationPowering the Future: Innovations for Sustainable Development, ICPEA 2024
PublisherInstitute of Electrical and Electronics Engineers Inc.
Pages187-192
Number of pages6
ISBN (Electronic)9798350344578
DOIs
Publication statusPublished - 2024
Event4th IEEE International Conference in Power Engineering Applications, ICPEA 2024 - Pulau Pinang, Malaysia
Duration: 4 Mar 20245 Mar 2024

Publication series

Name2024 IEEE 4th International Conference in Power Engineering Applications: Powering the Future: Innovations for Sustainable Development, ICPEA 2024

Conference

Conference4th IEEE International Conference in Power Engineering Applications, ICPEA 2024
Country/TerritoryMalaysia
CityPulau Pinang
Period4/03/245/03/24

Keywords

  • G7
  • arc model
  • flashover
  • mica
  • polluted insulator

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