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Reseach Article

A New Approach to Audio Wave Watermarking

by Namrata G. Murumbekar, B. M. Patil, Vijay Chandode
International Journal of Computer Applications
Foundation of Computer Science (FCS), NY, USA
Volume 110 - Number 1
Year of Publication: 2015
Authors: Namrata G. Murumbekar, B. M. Patil, Vijay Chandode
10.5120/19281-0699

Namrata G. Murumbekar, B. M. Patil, Vijay Chandode . A New Approach to Audio Wave Watermarking. International Journal of Computer Applications. 110, 1 ( January 2015), 18-23. DOI=10.5120/19281-0699

@article{ 10.5120/19281-0699,
author = { Namrata G. Murumbekar, B. M. Patil, Vijay Chandode },
title = { A New Approach to Audio Wave Watermarking },
journal = { International Journal of Computer Applications },
issue_date = { January 2015 },
volume = { 110 },
number = { 1 },
month = { January },
year = { 2015 },
issn = { 0975-8887 },
pages = { 18-23 },
numpages = {9},
url = { https://ijcaonline.org/archives/volume110/number1/19281-0699/ },
doi = { 10.5120/19281-0699 },
publisher = {Foundation of Computer Science (FCS), NY, USA},
address = {New York, USA}
}
%0 Journal Article
%1 2024-02-06T22:46:39.846412+05:30
%A Namrata G. Murumbekar
%A B. M. Patil
%A Vijay Chandode
%T A New Approach to Audio Wave Watermarking
%J International Journal of Computer Applications
%@ 0975-8887
%V 110
%N 1
%P 18-23
%D 2015
%I Foundation of Computer Science (FCS), NY, USA
Abstract

There are different watermark embedding methods invented for digital media which contains lot of watermarking algorithms for text, image, audio, and video. In this paper focus is on audio watermarking part of digital media. Here we are describing a technique for embedding digital watermarks into digital audio signals. On audio wave signal apply quantization, LSB destruction, DCT and inverse of it. The key concept for proposed work is using the watermark from the original audio sample itself. The advantage of doing this is to avoid the excess raw data. The result of proposed work is compared with Noriega method, shows better performance for proposed work.

References
  1. P. Samuelson, "Digital Media and the Law," Communications of ACM, vol. 34, no. 10, pp. 23- 28, Oct. 1991.
  2. M. Arnold, "Audio watermarking: Features, Applications and Algorithms," in IEEE Int. Conf. Multimedia and Expo 2000, vol. 2, 2000, pp. 1013–1016.
  3. W. Bender, D. Gruhl, N. Morimoto, and A. Lu, "Techniques for Data Hiding," IBM Syst. J. , vol. 35, no. 3/4, pp. 313–336, 1996.
  4. L. Boney, A. H. Tewfik, and K. N. Hamdy, "Digital Watermarking for Audio Signals," in Proc. 3rd Int. Conf. Multimedia Computing and Systems, 1996, pp. 473–480.
  5. J. Dittmann, M. Steinebach, and R. Steinmetz, "Digital Watermarking for MPEG Audio Layer 2," in Proc. ACM Multimedia, 1999, pp. 117–122.
  6. J. W. Seok and J. W. Hong, "Audio Watermarking for Copyright Protection of Digital Audio Data," Electron. Lett. , vol. 37, no. 1, pp. 60–61, 2001.
  7. M. D. Swanson, B. Zhu, A. H. Tewfik, and L. Boney, "Robust Audio Watermarking using Perceptual Coding," Signal Process. , vol. 66, no. 3, pp. 337–356, 1998.
  8. I. K. Yeo and H. J. Kim, "Modified Patchwork Algorithm: The novel audio watermarking scheme," in Proc. IEEE Int. Conf. Information Technology: Coding and Computing, Las Vegas, NV, April 2–4, 2001, pp. 237–242.
  9. M. Chandra, S. Pandel, Rama Chaudhary " Digital Watermarking Technique for Protecting Digital Images"226-233, IEEE 2010.
  10. L. Boney, A. H. Tewfik, and K. N. Hamdy, "Digital Watermarking for Audio Signals," in Proc. 3rd Int. Conf. Multimedia Computing and Systems, 1996, pp. 473–480.
  11. C. T. Hsu and J. L. Wu, "DCT-based Watermarking for Video," IEEE Transaction on Consumer Electronics, Vol. 44, No. 1, FEBRUVARY 1998.
  12. R. M. Noriega, H. Kang, B. Kurkoski, K. Yamaguchai and M. N. Miyatake, "Audio Watermarking Based on Wavelet Transform and Quantization Index Modulation".
  13. J. Cummins, P. Diskin, S. Lau and R. Parlett, "Steganography and Digital Watermarking," School of Computer Science, University of Birmingham, http://www. gnu. org/copyleft/fdl. html.
  14. J. Cox, J. Kilian, T. Leighton and T. Shamoon, "Secure Spread Spectrum Watermarking for Multimedia," Tech. Rep. 95-1 0, NEC Research Institute, 1995.
  15. O. Bruyndonckx, J. J. Quisquater and B. Macq, "Spatial Method for Copyright Labeling of Digital Images," Proc. IEEE Nonlinear Signal and Image Processing, pp. 456-459, June 1995.
  16. H. Berghel and L. O'Gorman, "Protecting Ownership Rights through Digital Watermarking," ComputerMagazine, pp. 101-103, July 1996.
  17. S. Agaian, D. Akopian, S. A. D'Souza1, "Two Algorithms in Digital Audio Steganography using Quantized Frequency Domain Embedding and Reversible Integer Transforms," USA.
  18. Mei Jiansheng1, Li Sukang1 and Tan Xiaomei" A Digital Watermarking Algorithm Based on DCT and DWT",104-107, International Symposium on Web Information Systems and Applications (WISA'09) 2009.
  19. R. V. Totla and K. S. Bapat, "Comparative Analysis of Watermarking in Digital Images Using DCT and DWT," International Journal of Scientific and Research Publications, Volume 3, Issue 2, February 2013, ISSN 2250-3153.
  20. ISO/IEC 1 1 172-2, "Coding of Moving Pictures and Associated Audio - for Digital Storage Media at up to About 1. 5 Mbits/s - Part 2 Video. "
Index Terms

Computer Science
Information Sciences

Keywords

Audio Watermark Wave