Szczegóły publikacji

Opis bibliograficzny

Acoustic emission source localization based on distance domain signal representation / M. GAWROŃSKI, K. GRABOWSKI, P. RUSSEK, W. J. STASZEWSKI, T. UHL, P. PAĆKO // W: Health monitoring of structural and biological systems 2016 : Las Vegas, United States, 20–24 March 2016 / ed. Tribikram Kundu. — [Bellingham : SPIE], cop. 2016. — (Proceedings of SPIE / The International Society for Optical Engineering ; ISSN 0277-786X ; vol. 9805). — ISBN: 978-1-5106-0046-1. — S. 98050I-1–98050I-7. — Bibliogr. s. 98050I-6–98050I-7, Abstr.

Autorzy (6)

Słowa kluczowe

source localizationacoustic emissionwave propagation

Dane bibliometryczne

ID BaDAP99337
Data dodania do BaDAP2016-08-09
DOI10.1117/12.2219044
Rok publikacji2016
Typ publikacjimateriały konferencyjne (aut.)
Otwarty dostęptak
KonferencjaHealth monitoring of structural and biological systems 2016
Czasopismo/seriaProceedings of SPIE / The International Society for Optical Engineering

Abstract

Acoustic emission is a vital non-destructive testing technique and is widely used in industry for damage detection, localisation and characterization. The latter two aspects are particularly challenging, as AE data are typically noisy. What is more, elastic waves generated by an AE event, propagate through a structural path and are significantly distorted. This effect is particularly prominent for thin elastic plates. In these media the dispersion phenomenon results in severe localisation and characterization issues. Traditional Time Difference of Arrival methods for localisation techniques typically fail when signals are highly dispersive. Hence, algorithms capable of dispersion compensation are sought. This paper presents a method based on the Time - Distance Domain Transform for an accurate AE event localisation. The source localisation is found through a minimization problem. The proposed technique focuses on transforming the time signal to the distance domain response, which would be recorded at the source. Only, basic elastic material properties and plate thickness are used in the approach, avoiding arbitrary parameters tuning.

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Distance-domain based localization techniques for acoustic emission sources: a comparative study / Krzysztof GRABOWSKI, Mateusz Gawroński, Hayato Nakatani, Paweł PAĆKO, Ireneusz Baran, Wojciech Spychalski, Wiesław J. STASZEWSKI, Tadeusz UHL, Tribikram Kundu // W: Health monitoring of structural and biological systems 2015 : San Diego, California, United States, March 9–12, 2015 / ed. Tribikram Kundu. — [Bellingham : SPIE], cop. 2015. — (Proceedings of SPIE / The International Society for Optical Engineering ; ISSN 0277-786X ; vol. 9438). — ISBN: 978-1628415414. — S. 94381T-1–94381T-9. — Bibliogr. s. 94381T-9, Abstr.
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#124155Data dodania: 20.9.2019
Acoustic source localization in anisotropic plates without knowing their material properties: an experimental investigation / Novonil Sen, Mateusz GAWROŃSKI, Paweł PAĆKO, Tadeusz UHL, Tribikram Kundu // W: Health monitoring of structural and biological systems XIII : 4–7 March 2019, Denver, Colorado, United States / eds. Paul Fromme, Zhongqing Su. — Bellingham : SPIE, cop. 2019. — (Proceedings of SPIE / The International Society for Optical Engineering ; ISSN 0277-786X ; vol. 10972). — ISBN: 9781510625990; e-ISBN: 9781510626003. — S. 1097224-1–1097224-19. — Bibliogr. s. 1097224-18–1097224-19