Abstract
In this paper, we analyze the audio signal distortions introduced by pitch-scaling, random cropping and DA/AD conversion, and find a robust feature, average Fourier magnitude over the log-polar frequency index(AFM), which can resist these attacks. Theoretical analysis and extensive experiments demonstrate that AFM is an appropriate embedding region for robust audio watermarking. This is the first work on applying log-polar mapping to audio watermark. The usage of log-polar mapping in our work is basically different from the existing works in image watermarking. The log-polar mapping is only applied to the frequency index, not to the transform coefficients, which avoids the reconstruction distortion of inverse log-polar transform and reduces the computation cost. Comparison with the existing methods, the proposed AFM-based watermarking scheme has the outstanding performance on resisting pitch-scaling and random cropping, as well as very approving robustness to DA/AD conversion and TSM (Time-Scale Modification). The watermarked audio achieves high auditory quality. Experimental results show that the scheme is very robust to common audio signal processing and distortions introduced in Stirmark for Audio.
Preview
Unable to display preview. Download preview PDF.
Similar content being viewed by others
References
Kim, H.J.: Audio watermarking techniques. In: Proc. of Pacific Rim Workshop on Digital Steganography, pp. 1–17 (2005)
Haitsma, J., Kalker, T., Bruekers, F.: Audio watermarking for monitoring and copy protection. In: Proc. of the 8th ACM Multimedia Workshop, Los Angeles, pp. 119–122 (2000)
Kirovski, D., Malvar, H.S.: Spread-spectrum watermarking of audio signals. IEEE Trans. on Signal Processing 51, 1020–1033 (2003)
Tachibana, R., Shimizu, S., Nakamura, T., Kobayashi, S.: An audio watermarking method robust against time- and frequency-fluctuation. In: Proc. of SPIE on Security and Watermarking of Multimedian Contents III, San Jose, USA, vol. 4314, pp. 104–115 (2001)
Tachibana, R.: Improving audio watermark robustness using stretched patterns against geometric distortion. In: Chen, Y.-C., Chang, L.-W., Hsu, C.-T. (eds.) PCM 2002. LNCS, vol. 2532, pp. 647–654. Springer, Heidelberg (2002)
Li, W., Xue, X., Lu, P.: Localized audio watermarking technique robust against time-scale modification. IEEE Transactions on Multimedia 8, 60–69 (2006)
Xiang, S., Huang, J.: Histogram-Based Audio Watermarking Against Time-Scale Modifications and Cropping Attacks. IEEE Transactions on Multimedia 9(7), 1357–1372 (2007)
Katzenbeisser, S., Petitcolas, F.A.P.: Information Hiding Techniques for Steganography and Digital Watermarking. Artech House, Inc. (2000)
O’Ruanaidh, J.J.K., Pun, T.: Rotation, scale and translation invariant spread spectrum digital image watermarking. Signal Process. 66(3), 303–317 (1998)
Arfib, F.K.D., Zolzer, U.: DAFX - Digital Audio Effects, pp. 232–292. J.Wiley & Sons, Chichester (2002)
Steinebach, M., Lang, A., Dittmann, J., Neubauer, C.: Audio watermarking quality evaluation: robustness to DA/AD processes. In: Proc. of IEEE Int. Conf. on Information Technology: Coding and Computing, pp. 100–103 (2001)
Sound Quality Assessment Material, http://sound.media.mit.edu/mpeg4/audio/sqam/
SDMI, SDMI Phase II Screening Technology Version 1.0 (February 2000), http://www.sdmi.org/download/FRWG00022401-Ph2_CFPv1.0.pdf
Steinebach, M., Petitcolas, F.A.P., Raynal, F., Dittmann, J., Fontaine, C., Seibel, S., Fates, N., Ferr, L.C.: StirMark benchmark: audio watermarking attacks. In: Proc. of International Conference on Information Technology: Coding and Computing, pp. 49–54 (2001)
Author information
Authors and Affiliations
Editor information
Editors and Affiliations
Rights and permissions
Copyright information
© 2009 Springer-Verlag Berlin Heidelberg
About this paper
Cite this paper
Yang, R., Kang, X., Huang, J. (2009). Robust Audio Watermarking Based on Log-Polar Frequency Index. In: Kim, HJ., Katzenbeisser, S., Ho, A.T.S. (eds) Digital Watermarking. IWDW 2008. Lecture Notes in Computer Science, vol 5450. Springer, Berlin, Heidelberg. https://doi.org/10.1007/978-3-642-04438-0_11
Download citation
DOI: https://doi.org/10.1007/978-3-642-04438-0_11
Publisher Name: Springer, Berlin, Heidelberg
Print ISBN: 978-3-642-04437-3
Online ISBN: 978-3-642-04438-0
eBook Packages: Computer ScienceComputer Science (R0)