Analysis of application of entropy methods of vibration diagnostic signal processing to assess technical condition of pipelines

The purpose of this article is to review the existing reliability problems of pipeline systems of power complexes. The article considers the existing statistical and logistics systems, which allow to process diagnostic information when assessing the technical condition of pipelines. Modern diagnosti...

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Main Authors: S. O. Gaponenko, A. E. Kondratiev, M. V. Kalinina, A. A. Derbeneva
Format: Article
Language:English
Published: Kazan State Power Engineering University 2024-06-01
Series:Известия высших учебных заведений: Проблемы энергетики
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Online Access:https://www.energyret.ru/jour/article/view/3028
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author S. O. Gaponenko
A. E. Kondratiev
M. V. Kalinina
A. A. Derbeneva
author_facet S. O. Gaponenko
A. E. Kondratiev
M. V. Kalinina
A. A. Derbeneva
author_sort S. O. Gaponenko
collection DOAJ
description The purpose of this article is to review the existing reliability problems of pipeline systems of power complexes. The article considers the existing statistical and logistics systems, which allow to process diagnostic information when assessing the technical condition of pipelines. Modern diagnostic methods are mainly based on the use of vibration, sound, and ultrasonic sensors. The presence of a defect in a pipeline is determined by analysis of the amplitude of a diagnostic signal. Higher efficiency in detecting defects was shown by probability-statistical methods of signal analysis, which are based on chaos theory. One such method is entropy analysis. Analysis of modern signal processing methods has shown that methods based on chaos theory are the most effective. The possibility of using entropy indices as sensitive diagnostic signs is considered. Comparative analysis of signal processing was carried out using entropy methods (Shannon entropy, Kolmogorov entropy) and using known statistical and logistic methods (Fourier Transform, Wavelet Transform, Hilbert-Huang Transform). The analysis results showed that entropy indicators respond to a change in signal structure caused by the presence of a defect in the pipeline or Entropy analysis is a promising method of processing diagnostic signals when assessing the technical condition of pipelines.
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issn 1998-9903
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publisher Kazan State Power Engineering University
record_format Article
series Известия высших учебных заведений: Проблемы энергетики
spelling doaj-art-90c3fddac7474282a2a0cf254900d46b2025-08-20T02:27:27ZengKazan State Power Engineering UniversityИзвестия высших учебных заведений: Проблемы энергетики1998-99032024-06-0126212813710.30724/1998-9903-2024-26-2-128-1371007Analysis of application of entropy methods of vibration diagnostic signal processing to assess technical condition of pipelinesS. O. Gaponenko0A. E. Kondratiev1M. V. Kalinina2A. A. Derbeneva3Kazan State Power Engineering UniversityKazan State Power Engineering UniversityKazan State Power Engineering UniversityKazan State Power Engineering UniversityThe purpose of this article is to review the existing reliability problems of pipeline systems of power complexes. The article considers the existing statistical and logistics systems, which allow to process diagnostic information when assessing the technical condition of pipelines. Modern diagnostic methods are mainly based on the use of vibration, sound, and ultrasonic sensors. The presence of a defect in a pipeline is determined by analysis of the amplitude of a diagnostic signal. Higher efficiency in detecting defects was shown by probability-statistical methods of signal analysis, which are based on chaos theory. One such method is entropy analysis. Analysis of modern signal processing methods has shown that methods based on chaos theory are the most effective. The possibility of using entropy indices as sensitive diagnostic signs is considered. Comparative analysis of signal processing was carried out using entropy methods (Shannon entropy, Kolmogorov entropy) and using known statistical and logistic methods (Fourier Transform, Wavelet Transform, Hilbert-Huang Transform). The analysis results showed that entropy indicators respond to a change in signal structure caused by the presence of a defect in the pipeline or Entropy analysis is a promising method of processing diagnostic signals when assessing the technical condition of pipelines.https://www.energyret.ru/jour/article/view/3028analysisapplicationentropy methodsprocessingvibrodiagnostic signalsevaluationtechnical conditionpipelines
spellingShingle S. O. Gaponenko
A. E. Kondratiev
M. V. Kalinina
A. A. Derbeneva
Analysis of application of entropy methods of vibration diagnostic signal processing to assess technical condition of pipelines
Известия высших учебных заведений: Проблемы энергетики
analysis
application
entropy methods
processing
vibrodiagnostic signals
evaluation
technical condition
pipelines
title Analysis of application of entropy methods of vibration diagnostic signal processing to assess technical condition of pipelines
title_full Analysis of application of entropy methods of vibration diagnostic signal processing to assess technical condition of pipelines
title_fullStr Analysis of application of entropy methods of vibration diagnostic signal processing to assess technical condition of pipelines
title_full_unstemmed Analysis of application of entropy methods of vibration diagnostic signal processing to assess technical condition of pipelines
title_short Analysis of application of entropy methods of vibration diagnostic signal processing to assess technical condition of pipelines
title_sort analysis of application of entropy methods of vibration diagnostic signal processing to assess technical condition of pipelines
topic analysis
application
entropy methods
processing
vibrodiagnostic signals
evaluation
technical condition
pipelines
url https://www.energyret.ru/jour/article/view/3028
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AT aekondratiev analysisofapplicationofentropymethodsofvibrationdiagnosticsignalprocessingtoassesstechnicalconditionofpipelines
AT mvkalinina analysisofapplicationofentropymethodsofvibrationdiagnosticsignalprocessingtoassesstechnicalconditionofpipelines
AT aaderbeneva analysisofapplicationofentropymethodsofvibrationdiagnosticsignalprocessingtoassesstechnicalconditionofpipelines