Advanced Diagnostic Approach for High-Voltage Insulators: Analyzing Partial Discharges through Zero-Crossing Rate and Fundamental Frequency Estimation of Acoustic Raw Data

Author:

Maresch Kaynan1,Freitas-Gutierres Luiz F.1,Oliveira Aécio L.1ORCID,Borin Aquiles S.1,Cardoso Ghendy1ORCID,Damiani Juliano S.1,Morais André M.2ORCID,Correa Cristian H.3,Martins Erick F.3

Affiliation:

1. Laboratory for Analysis and Protection of Electrical Systems, Technology Center, Federal University of Santa Maria, Santa Maria 97105-900, RS, Brazil

2. High and Extra High Voltage Laboratory, Institute of Technology, Federal University of Pará, Pará 66075-110, PA, Brazil

3. Engineering Board, CPFL Transmission, Porto Alegre 90230-181, RS, Brazil

Abstract

Acoustic inspection is a valuable technique that can detect early stage defects in equipment, thereby facilitating predictive maintenance. In recent times, ultrasonic sensors have made detecting partial discharges through acoustic sensing increasingly feasible. However, interpreting the acoustic signals can pose challenges, as it requires extensive expertise and knowledge of equipment configuration. To address this issue, a technique based on zero-crossing rate and fundamental frequency estimation has been proposed to standardize insulator diagnosis. In an experiment involving a database of 72 raw acoustic signals with frequencies ranging from 0 to 128 kHz, various types of pollution and defects were introduced to a chain of insulators. By employing the proposed technique, the occurrence of partial discharges can be detected and classified according to type, such as corona or surface discharges. This advanced approach to diagnosis simplifies the process while providing valuable insights into the severity of observed phenomena in the field.

Funder

CPFL Transmission

Coordenação de Aperfeiçoamento de Pessoal de Nível Superior

Publisher

MDPI AG

Subject

Energy (miscellaneous),Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Electrical and Electronic Engineering,Control and Optimization,Engineering (miscellaneous),Building and Construction

Reference21 articles.

1. (2010). High Voltage Test Techniques, Part 1: General Definitions and Test Requirements. Standard No. IEC Standard 60060-1:2010.

2. Küchler, K. (2018). High Voltage Engineering: Fundamentals, Technology, Applications, Springer.

3. (2010). High Voltage Test Techniques, Part 2: Measuring Systems. Standard No. IEC Standard 60060-2:2010.

4. Acoustic diagnosis of gas insulated substations: A theoretical and experimental basis;Lundgaard;IEEE Trans. Power Deliv.,1990

5. Detection of Partial Discharges in Transformers Using Acoustic Emission Techniques;Howells;IEEE Trans. Power Appar. Syst.,1978

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