DocumentCode :
1097237
Title :
A Sequential Quantization Strategy for Data Embedding and Integrity Verification
Author :
Cheung, Yiu-Ming ; Wu, Hao-Tian
Author_Institution :
Hong Kong Baptist Univ., Kowloon Tong
Volume :
17
Issue :
8
fYear :
2007
Firstpage :
1007
Lastpage :
1016
Abstract :
Quantization-based embedding has been used for integrity verification in semi-fragile watermarking. However, some of the illegal modifications cannot be detected in the normal quantization-based methods, especially when the host values (i.e., the values chosen in a host signal for data embedding) are independent from each other. In this paper, a sequential quantization strategy (SQS) is proposed to make the modulation of a host value dependent on a certain number of the previous ones. Therefore, a balance between security improvement and tamper localization can be achieved for integrity verification. Furthermore, the proposed SQS is incorporated with a reversible data hiding mechanism. A new watermarking algorithm is then generated for mesh authentication. The experimental results show that the chance to detect illegal modifications is increased by adopting the SQS while the property of reversibility is achieved.
Keywords :
cryptography; data compression; data encapsulation; image coding; mesh generation; message authentication; multimedia systems; sequential codes; watermarking; SQS; cryptography; data embedding; digital images; host value; illegal modification detection; integrity verification; mesh authentication; multimedia authentication; quantization-based embedding; reversible data hiding mechanism; security improvement; semifragile watermarking; sequential quantization strategy; tamper localization; Authentication; Data encapsulation; Data mining; Data security; Digital images; Mesh generation; Public key cryptography; Quantization; Transform coding; Watermarking; Fragile watermarking; mesh authentication; reversible data hiding; sequential quantization strategy (SQS);
fLanguage :
English
Journal_Title :
Circuits and Systems for Video Technology, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8215
Type :
jour
DOI :
10.1109/TCSVT.2007.903553
Filename :
4291621
Link To Document :
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