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Dive into the research topics where Sebastian Borucki is active.

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Featured researches published by Sebastian Borucki.


Journal of the Acoustical Society of America | 2008

The wavelet analysis the acoustic emission signals generated by multi‐source partial discharges

Andrzej Cichoń; Sebastian Borucki; T. Boczar

Within the research work, the results of which are presented in this paper, a comparative analysis of the acoustic emission (AE) signals generated by multi‐source partial discharges (PDs) was carried out. The research investigations were carried out in a model system in which PDs were generated with two spark‐gaps. A spark‐gap in the surface system and a point‐plane spark‐gap were used due to the fact that these are the most commonly occurring PD forms in power transformers. The AE signals were registered with a contact transducer placed on the external part of the tub. The analysis in the time‐frequency domain using a short‐time Fourier transform (STFT) was carried out for the AE signals generated by PDs. The results of the analysis are shown in the form of two‐ and three‐dimensional spectrograms of the power spectral density and three‐dimensional spectrograms of the amplitude spectrum.


Journal of the Acoustical Society of America | 2008

Measurement of the acoustic pressure distribution occurring around an aerial substation adjacent to apartment buildings

Sebastian Borucki; T. Boczar; Andrzej Cichoń

The subject matter of the research work presented in this paper refers to the measurements of the values of the acoustic pressure levels (noise) occurring around a main feeding‐point aerial substation adjacent to apartment buildings. The paper presents the values of the noise accompanying the particular power devices, mainly transformers, during their regular operation. The main aim of this research work was the comparison and assessment of the acoustic pressure values measured with the permissible values defined by environmental standards binding in Poland. The research analysis carried out proved that during a long‐term operation of power appliances installed in substations the acoustic pressure level that they emit into the environment is not constant but is subject to changes. Thus the increase of the noise level above the permissible values can be the cause of violation of environmental standards. Due to a significant increase of peoples awareness and readiness to claim their rights, the main conseq...


Archives of Acoustics | 2011

Technical Possibilities of Reducing the Sound Pressure Level Emitted into the Environment by a Power Transformer

Sebastian Borucki; Tomasz Boczar; Andrzej Cichoń


Archives of Acoustics | 2014

Investigation of the acoustic pressure distribution occurring around an aerial substation adjacent to apartment buildings

Sebastian Borucki; T. Boczar; Andrzej Cichoń


Archives of Acoustics | 2014

COMPARATIVE ANALYSIS OF THE AE SIGNALS GENERATED BY PARTIAL SINGLE- AND MULTI-SOURCE DISCHARGES

Andrzej Cichoń; T. Boczar; Sebastian Borucki; Marcin Lorenc


Archives of Acoustics | 2011

Diagnosis of the Non-Concurrent Operation of the On-Load Tap Changer Contacts by the Acoustic Emission Method

Andrzej Cichoń; Sebastian Borucki; T. Boczar


Molecular and Quantum Acoustics | 2007

APPLICATION OF SIGNAL PROCESSING ELEMENTS FOR THE CHARACTERISTICS OF ACOUSTIC EMISSION PULSES GENERATED BY PARTIAL DISCHARGES

T. Boczar; Sebastian Borucki; Andrzej Cichoń; M. Lorenc


Molecular and Quantum Acoustics | 2005

Recognizing Partial Discharge Forms Measured By The Acoustic Emission Method Using The Spectrum Power Density As A Parameter Of The Artificial Neuron Network

T. Boczar; Sebastian Borucki; Andrzej Cichoń; M. Lorenc


Iet Generation Transmission & Distribution | 2018

Measurements on partial discharge in on-site operating power transformer: a case study

Michal Kunicki; Andrzej Cichoń; Sebastian Borucki


Archive | 2011

DiagnosisoftheNon-ConcurrentOperation oftheOn-LoadTapChanger Contacts bytheAcousticEmissionMethod

Sebastian Borucki; T. Boczar

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T. Boczar

Opole University of Technology

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Marcin Lorenc

Opole University of Technology

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Michal Kunicki

Opole University of Technology

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