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  • Experimental analysis of acoustic emission response is based on the processing of a stochastic process realization. The results of this processing procedure are statistical characteristics, such as, probability density, distribution function, root-mean-square deviation, correlation function and spectral density. Our acoustic emission studies are focused mainly on the acoustic emission impulse counting rate and spectral density. The present paper deals with a digital method of determining the spectral density.
  • Experimental analysis of acoustic emission response is based on the processing of a stochastic process realization. The results of this processing procedure are statistical characteristics, such as, probability density, distribution function, root-mean-square deviation, correlation function and spectral density. Our acoustic emission studies are focused mainly on the acoustic emission impulse counting rate and spectral density. The present paper deals with a digital method of determining the spectral density. (en)
Title
  • Calculating Spectral Density to Determine Acoustic Emission Response
  • Calculating Spectral Density to Determine Acoustic Emission Response (en)
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  • Calculating Spectral Density to Determine Acoustic Emission Response
  • Calculating Spectral Density to Determine Acoustic Emission Response (en)
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  • RIV/00216305:26110/13:PU106880!RIV14-GA0-26110___
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  • P(GAP104/10/1430)
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http://linked.open...aciTvurceVysledku
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  • 64106
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  • RIV/00216305:26110/13:PU106880
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  • Acoustic emission, spectral density, Fast Fourier Transform (en)
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  • [AEEF94209E75]
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  • Brno
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  • Brno
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  • 11th Workshop NDT 2013 Non-Destructive Testing in Engineering Practice
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  • Manychová, Monika
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number of pages
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  • Akademické nakladatelství CERM
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  • 978-80-7204-864-9
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  • 26110
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