A real site application of a diagnose method at Estimating Insulated Cables Degradation using Non Linearity Indicators

Authors

  • L. N. Velasco Author
  • A. Reis Author
  • J. C. Oliveira Author
  • L. C. G. Freitas Author
  • A. P. Finazzi Author
  • F. N. Lima Author
  • H.C. Martins Author
  • W. J. Araújo Author
  • J. M. Borges Author

DOI:

https://doi.org/10.24084/repqj11.545

Keywords:

Degradation indexes, XLPE insulated cable, Leakage current, Cable diagnosis, Power quality, Water tree

Abstract

The quality of electricity supply, among other issues, deals with continuity indicators as one of the most important factors for the characterization of an adequate service as far as power quality is concerned. In this context, one of the major problems responsible for the unscheduled interruptions is related to the degradation of electrical cables insulation and the well-known water tree effect emerges as an important cause for the deterioration of their insulation layer. If this phenomenon happens large loss of insulating properties of dielectric material used to build up such component will occur. In light of these facts, the development of procedures to evaluate, predict and indicate the operational status of operating cables shows highly attractive in order to improve the quality and reliability of energy supply. Focusing this subject, this paper presents a synthesis of existing methods and a new trend towards the mentioned matter. By using experimental measurements, carried out in medium voltage commercial operating cables in a distribution utility throughout non-invasive approach, applied voltage and insulating leakage currents are obtained so support the analysis. The data are used to obtain degradation indexes to estimate the cables physical operational conditions and the found indicators are further considered in viewing the effectiveness of the strategies for the diagnosis purposes.

Author Biographies

  • L. N. Velasco

     Federal University of Uberlândia (UFU), Faculty of Electrical Engineering – Uberlândia. Brazil

  • A. Reis

     Federal University of Uberlândia (UFU), Faculty of Electrical Engineering – Uberlândia. Brazil

  • J. C. Oliveira

     Federal University of Uberlândia (UFU), Faculty of Electrical Engineering – Uberlândia. Brazil

  • L. C. G. Freitas

     Federal University of Uberlândia (UFU), Faculty of Electrical Engineering – Uberlândia. Brazil

  • A. P. Finazzi

    Federal University of Mato Grosso (UFMT), Electrical Engineering Department – Cuiabá (Brazil) 

  • F. N. Lima

    Federal University of Mato Grosso (UFMT), Electrical Engineering Department – Cuiabá (Brazil)

  • H.C. Martins

    Companhia Energética de Minas Gerais (CEMIG) – Belo Horizonte (Brazil) 

  • W. J. Araújo

    Companhia Energética de Minas Gerais (CEMIG) – Belo Horizonte (Brazil) 

  • J. M. Borges

    Companhia Energética de Minas Gerais (CEMIG) – Belo Horizonte (Brazil) 

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Published

2024-01-24

Issue

Section

Articles