
- 224 pages
- English
- ePUB (mobile friendly)
- Available on iOS & Android
Wavelet Analysis in Civil Engineering
About this book
Wavelets as a Powerful Signal Processing Tool
The principles of wavelets can be applied to a range of problems in civil engineering structures, such as earthquake-induced vibration analysis, bridge vibrations, and damage identification. This book is particularly useful for graduate students and researchers in vibration analysis, especially those dealing with random vibrations.
Wavelet Analysis in Civil Engineering Comprised of seven chapters, this text:
- Introduces the concept and utility of wavelet transform
- Describes the discretization of ground motions using wavelet coefficients
- Explains how to characterize nonstationary ground motions using statistical functionals of wavelet coefficients of seismic accelerations
- Develops the formulation of a linear single-degree-of-freedom system
- Shows stepwise development of the formulation of a structure idealized as a linear multi-degree-of-freedom system in terms of wavelet coefficients
- Defines wavelet domain formulation of a nonlinear single-degree-of-freedom system
- Introduces the concept of probability in wavelet-based theoretical formulation of a nonlinear two-degree-of-freedom system
- Covers a variety of case studies highlighting diverse applications
Wavelet Analysis in Civil Engineering
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Information
Table of contents
- Cover
- Title Page
- Copyright Page
- Table of Contents
- Preface
- Acknowledgments
- About the Author
- Introduction
- 1 Introduction to wavelets
- 2 Vibration analysis of SDOF and MDOF systems in the wavelet domain
- 3 Ground motion characterization and PSA response of SDOF system
- 4 Wavelet-based analysis of linear MDOF system
- 5 Wavelet-based nonstationary vibration analysis of a simple nonlinear system
- 6 Wavelet-based probabilistic analysis
- 7 General applications
- Appendix: MATLAB ® Programmes
- References