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基于整数小波变换的可逆数据库水印 被引量:1

Reversible database watermark based on integer wavelet transform
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摘要 提出了一种基于整数小波变换的可逆数据库水印算法,通过对数据库数据的小波域高频系数进行分析,确定算法的溢出预防机制。将水印嵌入到数据库数据的小波域中,提高水印的不可见性。分块策略的使用进一步提高了水印的不可见性。通过修改数据块的小波高频系数均值,将一位水印与数据块绑定来提高水印的鲁棒性。仿真实验表明,该水印具有良好的不可见性和一定的鲁棒性。 A reversible database watermark based on integer wavelet transform is proposed. High frequency co-efficients of wavelet domain of the database data are analyzed to determine the overflow prevention mechanism of the scheme. The watermark is embedded into the wavelet domain of the database in order to improve the water-marking invisibility. Blocking strategy is used to further enhance the watermarking invisibility. By modifying the mean of the wavelet high frequency coefficients of the data block, we can embed one watermark into the data block to improve the robustness of the watermark. Experimental results show that the scheme is effective.
作者 姜传贤 程小辉 许鑫磊 李智 JIANG Chuan-xian CHENG Xiao-hui XU Xin-lei LI Zhi(School of Information Science and Engineering, Guilin University of Technology, Guilin 541004, China School of Computer Science and Information, Guizhou University, Guiyang 550025 , China)
出处 《桂林理工大学学报》 CAS 北大核心 2017年第1期191-195,共5页 Journal of Guilin University of Technology
基金 国家自然科学基金项目(61262076 61262075 61462013) 广西自然科学基金项目(2014GXNSFAA118379)
关键词 可逆数据库水印 整数小波变换 鲁棒性 不可见性 reversible database watermarking integer wavelet transform ( IWT ) robustness invisibility
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  • 1Amazon. Amazon Web Services: Overview of Security Processes[EB/OL] (2009-03-22). http://www.awsmedia.s3.amazonaws. com/pdf/AWS Security_Whitepaper.pdf.
  • 2Agrawal R, Kiernan J. Watermarking Relational Databases[C]//Proc. of the 28th Conference on Very Large Databases. Hong Kong, China: [s. n.], 2002.
  • 3Agrawal R, Haas P J, Kiernan J. Watermarking Relational Data: Framework Algorithms and Analysis[J]. The VLDB Journal, 2003, 12(2): 157-169.
  • 4Zhang Yong, Yang Bian, Niu Xiamu. Reversible Watermarking for Relational Database Authentication[J]. Journal of Computers, 2006, 17(2): 59-66.
  • 5Gupta G. Pieprzyk J. Reversible and Blind Database Watermarking Using Difference Expansion[C]//Proc. of the 1st International Conference on Forensic Applications and Techniques in Telecommunications, Information, Multimedia and Workshop. Brussels, Belgium: ICST Press, 2008.
  • 6Fridrich J, Goljan M, Du R. Invertible authentication watermark for JPEG images[ A ]. Proc of Information Technology: Coding and Computing [ C ]. Washington, DC: IEEE Computer Society Press,2001.223 - 227.
  • 7C W Honsinger, P Jones, M Rabbani, J C Stoffel. Lossless Recovery of an Original Image Containing Embedded Data[ P ].US Patent: 6278791, August 21,2001.
  • 8J Dittmann, S Katzenbeisser, C Schallhart, H Veith. Provably Secure Authentication of Digital Media Through Invertible Watermarks[ EB/OL]. http://epdnt, iacr. org/2004/293, Nov 7,2004.
  • 9J Fddrich, M Goljan, R Du. Invertible authentication[ A ]. Proceedings of the SPIE vol. 3971, Security and Watermarking of Multimedia Contents Ⅲ[ C ]. Washington, DC: SPIE Press,2001.197 - 208.
  • 10J Fridrich, M Goljan, R Du. Lossless data embedding-new paradigm in digital watermarking [ J ]. EURASIP Journal on Applied Signal Processing,2002, (2) : 185 - 196.

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