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Gruhl, N. Morimoto, A. Lu, “Techniques for data hiding,” IBM Systems Journal, vol. 35, nos 3&4, 1996. [2] M. D. Swanson, B. Zhu, A. H. Tewfik, L. 337-355, 1998. -P. -C. -C. Kuo, “Robust and efficient digital audio watermarking using audio content analysis,” SPIE 2000. [4] R. Tachibana, S. Shimizu, T. Nakamura and S. Kobayashi, “An audio watermarking method robust against time- and frequency-fluctuation,” SPIE 2001. W. , NCTU 36 References (II) [5] M. Steinebach et al, “StirMark benchmark: audio watermarking attacks,” IEEE ICITCC, 2000.

P. -C. -C. Kuo, “Robust and efficient digital audio watermarking using audio content analysis,” SPIE 2000. [4] R. Tachibana, S. Shimizu, T. Nakamura and S. Kobayashi, “An audio watermarking method robust against time- and frequency-fluctuation,” SPIE 2001. W. , NCTU 36 References (II) [5] M. Steinebach et al, “StirMark benchmark: audio watermarking attacks,” IEEE ICITCC, 2000. [6] T. Ciloglu and S. U. Karaaslan, “An improved allpass watermarking scheme for speech and audio,” IEEE ICME, 2000. -S.

NCTU 34 Conclusions ♦ Only some degree of success, all of the current scheme have limitations! W. , NCTU 35 References [1] W. Bender, D. Gruhl, N. Morimoto, A. Lu, “Techniques for data hiding,” IBM Systems Journal, vol. 35, nos 3&4, 1996. [2] M. D. Swanson, B. Zhu, A. H. Tewfik, L. 337-355, 1998. -P. -C. -C. Kuo, “Robust and efficient digital audio watermarking using audio content analysis,” SPIE 2000. [4] R. Tachibana, S. Shimizu, T. Nakamura and S. Kobayashi, “An audio watermarking method robust against time- and frequency-fluctuation,” SPIE 2001.

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