This research work presents an in-situ imaging method for the localization of the impact point in complex anisotropic structures with diffuse field conditions, using only one passive transducer. The proposed technique is based on the time reversal approach applied to a number of waveforms stored into a database containing the experimental Green's function of the medium. The present method exploits the benefits of multiple scattering, mode conversion and boundaries reflections to achieve the focusing of the source with high resolution. The optimal re-focusing of the back propagated wave field at the impact point is accomplished through a "virtual" imaging process, which does not require any iterative algorithms and a priori knowledge of the mechanical properties of the structure. The robustness of the time reversal method is experimentally demonstrated on a stiffened composite panel and the source position can be retrieved with a high level of accuracy (error less than 3%). The simple configuration, minimal processing requirements and computational time (less than 1 sec) make this method a valid alternative to the conventional imaging structural health monitoring systems for the acoustic emission source localization. © 2011 Copyright Society of Photo-Optical Instrumentation Engineers (SPIE).

Acoustic emission source localization in anisotropic structures with diffuse field conditions using a time reversal approach / Ciampa, F.; Meo, M.. - 7984:(2011). (Intervento presentato al convegno Health Monitoring of Structural and Biological Systems 2011 tenutosi a San Diego, CA, usa nel 2011) [10.1117/12.882622].

Acoustic emission source localization in anisotropic structures with diffuse field conditions using a time reversal approach

Ciampa F.;
2011-01-01

Abstract

This research work presents an in-situ imaging method for the localization of the impact point in complex anisotropic structures with diffuse field conditions, using only one passive transducer. The proposed technique is based on the time reversal approach applied to a number of waveforms stored into a database containing the experimental Green's function of the medium. The present method exploits the benefits of multiple scattering, mode conversion and boundaries reflections to achieve the focusing of the source with high resolution. The optimal re-focusing of the back propagated wave field at the impact point is accomplished through a "virtual" imaging process, which does not require any iterative algorithms and a priori knowledge of the mechanical properties of the structure. The robustness of the time reversal method is experimentally demonstrated on a stiffened composite panel and the source position can be retrieved with a high level of accuracy (error less than 3%). The simple configuration, minimal processing requirements and computational time (less than 1 sec) make this method a valid alternative to the conventional imaging structural health monitoring systems for the acoustic emission source localization. © 2011 Copyright Society of Photo-Optical Instrumentation Engineers (SPIE).
2011
Health Monitoring of Structural and Biological Systems 2011
9780819485465
0819485462
Acoustic emission source localization in anisotropic structures with diffuse field conditions using a time reversal approach / Ciampa, F.; Meo, M.. - 7984:(2011). (Intervento presentato al convegno Health Monitoring of Structural and Biological Systems 2011 tenutosi a San Diego, CA, usa nel 2011) [10.1117/12.882622].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11589/275169
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