Acceso abierto

Cross-Correlation-Based Method vs. Classical Fft for Spectral Analysis of Impulse Response

   | 27 ene 2015

Cite

1. Ahn S. J., Jeong W. B., Yoo W. S. (2005), Improvement of impulse response spectrum and its application, Journal of Sound and Vibration, 288, 1223-1239.10.1016/j.jsv.2005.01.020Search in Google Scholar

2. Bendat J. S., Piersol A. G. (1980), Engineering applications of correlation and spectral analysis, Wiley-Interscience, New York.Search in Google Scholar

3. Cawley P., Adams R. D. (1979), Improved frequency resolution from transient tests with short record lengths, Journal of Sound and Vibration, Vol. 64, 123-132.Search in Google Scholar

4. Dunne J. F. (2002), A fast time-domain integration method for computing non-stationary response histories of linear oscillators with discrete-time random forcing, Journal of Sound and Vibration, Vol. 254, 635-676.Search in Google Scholar

5. Feldman M. (2011), Hilbert transform in vibration analysis, Mechanical Systems and Signal Processing, 25, 735-802.10.1016/j.ymssp.2010.07.018Search in Google Scholar

6. Gasior M. (2006), Improving frequency resolution of discrete spectra, Ph.D. thesis, AGH University of Science and Technology, Krakow, Poland.Search in Google Scholar

7. Gasior M. (2010), Improving frequency resolution of discrete spectra - Algorithms of three-node interpolation, ISBN 978-3-8383-5943-4, LAP LAMBERT Academic Publishing.Search in Google Scholar

8. Gasior M., Gonzalez J. L. (2004), Improving FFT frequency measurement resolution by parabolic and gaussian interpolation, AB-Note-2004-021 BDI, CERN, Geneva, Switzerland.10.1063/1.1831158Search in Google Scholar

9. Kotowski A. (2010), Reading the frequency of harmonics by crosscorrelation function and its envelope, Proc. 6th Int. Conf. Mechatronic Systems and Materials, 108-109.Search in Google Scholar

10. Kotowski A. (2014), A new method for spectral analysis of nonstationary signals from impact tests, Journal of Vibroengineering, 16, 2171-2177.Search in Google Scholar

11. Quinn B. G. (2009), Recent advances in rapid frequency estimation, Digital Signal Processing, 19, 942-948.10.1016/j.dsp.2008.04.004Search in Google Scholar

12. Thrane N. (1984), The Hilbert Transform, Technical Review, No. 3, Brüel&Kjær, BV 0015.Search in Google Scholar

13. Thrane N., Wismer J., Konstantin-Hansen H., Gade S. (1999), Practical use of the “Hilbert transform”, Application Note, Brüel&Kjær, BO 0437.Search in Google Scholar