Bibliothèque de Faculté de Génie Mécanique IGCMO
Auteur David Edward Newland
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| Titre : |
An introduction to random vibration ,spctral and wavelet analysis |
| Titre original : |
3rd.ed. |
| Type de document : |
texte imprimé |
| Auteurs : |
David Edward Newland, Auteur |
| Editeur : |
longman sientific et technical |
| Année de publication : |
1993 |
| Importance : |
477 p |
| Présentation : |
ill. |
| Format : |
15.5 cm x 23.5 cm |
| ISBN/ISSN/EAN : |
978-0-582-21584-9 |
| Langues : |
Anglais (eng) Langues originales : Anglais (eng) |
| Catégories : |
AUTOMATISME:02 Théorie et traitement du signal
|
| Mots-clés : |
Random vibration Spectral theory (Mathematics) Data processing Wavelets (Mathematics) Vibrations aléatoires Théorie spectrale (mathématiques) Ondelettes Mécanique. |
| Résumé : |
One of the first engineering books to cover wavelet analysis, this classic text describes and illustrates basic theory, with a detailed explanation of the workings of discrete wavelet transforms. Computer algorithms are explained and supported by examples and a set of problems, and an appendix lists ten computer programs for calculating and displaying wavelet transforms. Starting with an introduction to probability distributions and averages, the text examines joint probability distributions, ensemble averages, and correlation; Fourier analysis; spectral density and excitation response relations for linear systems; transmission of random vibration; statistics of narrow band processes; and accuracy of measurements. Discussions of digital spectral analysis cover discrete Fourier transforms as well as windows and smoothing. Additional topics include the fast Fourier transform; pseudo-random processes; multidimensional spectral analysis; response of continuous linear systems to stationary random excitation; and discrete wavelet analysis. Numerous diagrams and graphs clarify the text, and complicated mathematics are simplified whenever possible. This volume is suitable for upper-level undergraduates and graduate students in engineering and the applied sciences; it is also an important resource for professionals. |
| Note de contenu : |
1.Joint probabillity distribution ensemble averages
2.correlation
4.fourier analysis
5.spectral density
6.Excitation-response relations for linear systems
7.Transmission of random vibration
8.statistics of narrow band processes
9.Accuracy of measurements |
An introduction to random vibration ,spctral and wavelet analysis = 3rd.ed. [texte imprimé] / David Edward Newland, Auteur . - longman sientific et technical, 1993 . - 477 p : ill. ; 15.5 cm x 23.5 cm. ISBN : 978-0-582-21584-9 Langues : Anglais ( eng) Langues originales : Anglais ( eng)
| Catégories : |
AUTOMATISME:02 Théorie et traitement du signal
|
| Mots-clés : |
Random vibration Spectral theory (Mathematics) Data processing Wavelets (Mathematics) Vibrations aléatoires Théorie spectrale (mathématiques) Ondelettes Mécanique. |
| Résumé : |
One of the first engineering books to cover wavelet analysis, this classic text describes and illustrates basic theory, with a detailed explanation of the workings of discrete wavelet transforms. Computer algorithms are explained and supported by examples and a set of problems, and an appendix lists ten computer programs for calculating and displaying wavelet transforms. Starting with an introduction to probability distributions and averages, the text examines joint probability distributions, ensemble averages, and correlation; Fourier analysis; spectral density and excitation response relations for linear systems; transmission of random vibration; statistics of narrow band processes; and accuracy of measurements. Discussions of digital spectral analysis cover discrete Fourier transforms as well as windows and smoothing. Additional topics include the fast Fourier transform; pseudo-random processes; multidimensional spectral analysis; response of continuous linear systems to stationary random excitation; and discrete wavelet analysis. Numerous diagrams and graphs clarify the text, and complicated mathematics are simplified whenever possible. This volume is suitable for upper-level undergraduates and graduate students in engineering and the applied sciences; it is also an important resource for professionals. |
| Note de contenu : |
1.Joint probabillity distribution ensemble averages
2.correlation
4.fourier analysis
5.spectral density
6.Excitation-response relations for linear systems
7.Transmission of random vibration
8.statistics of narrow band processes
9.Accuracy of measurements |
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