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Collective blind image watermarking in DWT-DCT domain with adaptive embedding strength governed by quality metrics

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Abstract

In this paper the merits of block-based blind watermarking in a composite DWT-DCT domain are explored. To improve the performance in robustness and imperceptibility, the quantization index modulation (QIM) applied to DWT-DCT coefficients has been formulated in an adaptive manner, where controlling parameters are designed to minimize the bit error rates of extracted watermarks subject to a quality criterion. The targeted coefficients are chosen based upon signal analysis in combination with additional consideration of human visual characteristics. To further enhance watermarking efficiency, two collective strategies are proposed. One takes advantage of multi-bit embedding and the other modifies the norm of a vector constituted by selected coefficients. Experimental results show that, in comparison with other DWT- and/or DCT-related watermarking methods, the proposed collective schemes achieve satisfactory improvements in robustness while the imperceptibility is properly maintained.

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References

  1. Al-Haj A (2007) Combined DWT-DCT digital image watermarking. J Comput Sci 3(9):740–746

    Article  Google Scholar 

  2. Amirgholipour SK, Naghsh-Nilchi AR (2009) Robust digital image watermarking based on joint DWT-DCT. Int J Digit Content Technol Applic 3(2):42–54

    Google Scholar 

  3. Arnold VI, Avez A (1968) Ergodic problems of classical mechanics. the mathematical physics monograph series. Benjamin, New York

    Google Scholar 

  4. Bao P, Ma X (2005) Image adaptive watermarking using wavelet domain singular value decomposition. IEEE Trans Circ Syst Video Technol 15(1):96–102

    Article  Google Scholar 

  5. Barni M, Bartolini F, Cappellini V, Piva A (1998) A DCT-domain system for robust image watermarking. Signal Process 66(3):357–372

    Article  MATH  Google Scholar 

  6. Bender W, Gruhl D, Morimoto N, Lu A (1996) Techniques for data hiding. IBM Syst J 35(3.4):313–336

    Article  Google Scholar 

  7. Chang C-C, Hu Y-S, Lin C-C (2007) A digital watermarking scheme based on singular value decomposition. In: Chen B, Paterson M, Zhang G (eds) Combinatorics, algorithms, probabilistic and experimental methodologies, vol 4614. lecture notes in computer science. Springer, Berlin Heidelberg, pp 82–93

    Google Scholar 

  8. Chang C-C, Tsai P, Lin C-C (2005) SVD-based digital image watermarking scheme. Pattern Recogn Lett 26(10):1577–1586

    Article  Google Scholar 

  9. Chen S-T, Huang H-N, Kung W-M et al. (2015) Optimization-based image watermarking with integrated quantization embedding in the wavelet-domain. Multimed Tools Appl:1–19

  10. Chen B, Wornell GW (2001) Quantization index modulation methods for digital watermarking and information embedding of multimedia. J VLSI Signal Process Syst Signal Image Video Technol 27(1):7–33

    Article  MATH  Google Scholar 

  11. Chen B, Wornell GW (2001) Quantization index modulation: a class of provably good methods for digital watermarking and information embedding. IEEE Trans Inform Theor 47(4):1423–1443

    Article  MathSciNet  MATH  Google Scholar 

  12. Chung K-L, Yang W-N, Huang Y-H, Wu S-T, Hsu Y-C (2007) On SVD-based watermarking algorithm. Appl Math Comput 188(1):54–57

    MathSciNet  MATH  Google Scholar 

  13. Cox IJ, Kilian J, Leighton FT, Shamoon T (1997) Secure spread spectrum watermarking for multimedia. IEEE Trans Imag Process 6(12):1673–1687

    Article  Google Scholar 

  14. Das C, Panigrahi S, Sharma VK, Mahapatra KK (2014) A novel blind robust image watermarking in DCT domain using inter-block coefficient correlation. AEU - Int J Electron Communicat 68(3):244–253

    Article  Google Scholar 

  15. Deb K, Al-Seraj MS, Hoque MM et al. (2012) Combined DWT-DCT based digital image watermarking technique for copyright protection. In: 7th Int Conf Elect Comput Eng 458–461

  16. Dowling J, Planitz B, Maeder A, Du J, Pham B, Boyd C, Chen S, Bradley A, Crozier S (2008) A comparison of DCT and DWT block based watermarking on medical image quality. In: Shi Y, Kim H-J, Katzenbeisser S (eds) Digital watermarking, vol 5041. lecture notes in computer science. Springer, Berlin Heidelberg, pp 454–466

    Google Scholar 

  17. Fan M-Q, Wang H-X, Li S-K (2008) Restudy on SVD-based watermarking scheme. Appl Math Comput 203(2):926–930

    MathSciNet  MATH  Google Scholar 

  18. Feng LP, Zheng LB, Cao P et al. (2010) A DWT-DCT based blind watermarking algorithm for copyright protection. In: 3rd IEEE Int Conf Comput Sci Inform Technol (ICCSIT) 455–458

  19. Gunjal BL, Mali SN (2011) Secured color image watermarking technique in DWT-DCT domain. Int J Comput Sci, Eng Inform Technol 1(3):36–44

    Google Scholar 

  20. Hernandez JR, Amado M, Perez-Gonzalez F (2000) DCT-domain watermarking techniques for still images: detector performance analysis and a new structure. IEEE Trans Imag Process 9(1):55–68

    Article  Google Scholar 

  21. Hsieh M-S, Tseng D-C, Huang Y-H (2001) Hiding digital watermarks using multiresolution wavelet transform. IEEE Trans Indust Electron 48(5):875–882

    Article  Google Scholar 

  22. Kalra GS, Talwar R, Sadawarti H et al. (2014) Adaptive digital image watermarking for color images in frequency domain. Multimed Tools Appl:1–21

  23. Laskar RH, Choudhury M, Chakraborty K, Chakraborty S (2011) A joint DWT-DCT based robust digital watermarking algorithm for ownership verification of digital images. In: Venugopal KR, Patnaik LM (eds) Computer networks and intelligent computing, vol 157. communications in computer and information science. Springer, Berlin Heidelberg, pp 482–491

    Chapter  Google Scholar 

  24. Lin SD, Chen C-F (2000) A robust DCT-based watermarking for copyright protection. IEEE Trans Consumer Electron 46(3):415–421

    Article  Google Scholar 

  25. Lin SD, Shie S-C, Guo JY (2010) Improving the robustness of DCT-based image watermarking against JPEG compression. Comput Standards Interfaces 32(1–2):54–60

    Article  Google Scholar 

  26. Makbol NM, Khoo BE (2014) A new robust and secure digital image watermarking scheme based on the integer wavelet transform and singular value decomposition. Digit Sign Process 33:134–147

    Article  Google Scholar 

  27. Mohammad A (2012) A new digital image watermarking scheme based on Schur decomposition. Multimed Tools Appl 59(3):851–883

    Article  Google Scholar 

  28. Naderahmadian Y, Hosseini-Khayat S (2014) Fast and robust watermarking in still images based on QR decomposition. Multimed Tools Appl 72(3):2597–2618

    Article  Google Scholar 

  29. Patra JC, Phua JE, Bornand C (2010) A novel DCT domain CRT-based watermarking scheme for image authentication surviving JPEG compression. Digit Sign Process 20(6):1597–1611

    Article  Google Scholar 

  30. Stanković RS, Falkowski BJ (2003) The Haar wavelet transform: its status and achievements. Comput Elect Eng 29(1):25–44

    Article  MATH  Google Scholar 

  31. Su Q, Niu Y, Wang G, Jia S, Yue J (2014) Color image blind watermarking scheme based on QR decomposition. Signal Process 94:219–235

    Article  Google Scholar 

  32. Su Q, Niu Y, Zhao Y, Pang S, Liu X (2013) A dual color images watermarking scheme based on the optimized compensation of singular value decomposition. AEU - Int J Electron Communicat 67(8):652–664

    Article  Google Scholar 

  33. Tao P, Eskicioglu AM (2006) An adaptive method for image recovery in the DFT domain. J Multimed:36–45

  34. Tsui TK, Zhang X-P, Androutsos D (2008) Color image watermarking using multidimensional fourier transforms. IEEE Trans Inform Forensics Security 3(1):16–28

    Article  Google Scholar 

  35. Vetterli M (1985) Fast 2-D discrete cosine transform. In: IEEE Int Conf Acoustics, Speech, Sign Process 1538–1541

  36. Wang Y, Doherty JF, Van Dyck RE (2002) A wavelet-based watermarking algorithm for ownership verification of digital images. IEEE Trans Imag Process 11(2):77–88

    Article  Google Scholar 

  37. Wang Y, Pearmain A (2004) Blind image data hiding based on self reference. Pattern Recogn Lett 25(15):1681–1689

    Article  Google Scholar 

  38. Wei ZH, Qin P, Fu YQ (1998) Perceptual digital watermark of images using wavelet transform. IEEE Trans Consumer Electron 44(4):1267–1272

    Article  Google Scholar 

  39. Zhang G, Wang S, Wen Q et al. (2004) An adaptive block-based blind watermarking algorithm. In: 7th Int Conf Sign Process (ICSP) 2294–2297

  40. Zhao X, Ho AS (2010) An introduction to robust transform based image watermarking techniques. In: Sencar H, Velastin S, Nikolaidis N, Lian S (eds) Intelligent multimedia analysis for security applications, vol 282. studies in computational intelligence. Springer, Berlin Heidelberg, pp 337–364

    Google Scholar 

  41. Zheng D, Liu Y, Zhao J et al. (2006) A survey of RST invariant image watermarking algorithms. In: Canadian Conf Electrical Comput Eng Ottawa, Canada 2086–2089

Download references

Acknowledgments

This work was supported by the Ministry of Science and Technology, Taiwan, ROC, under Grant MOST 103-2221-E-197-020.

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Correspondence to Hwai-Tsu Hu.

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Hu, HT., Hsu, LY. Collective blind image watermarking in DWT-DCT domain with adaptive embedding strength governed by quality metrics. Multimed Tools Appl 76, 6575–6594 (2017). https://doi.org/10.1007/s11042-016-3332-3

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  • DOI: https://doi.org/10.1007/s11042-016-3332-3

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