2006
DOI: 10.1007/11802167_57
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Scalable Fingerprinting Scheme Using Statistically Secure Anti-collusion Code for Large Scale Contents Distribution

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Cited by 3 publications
(4 citation statements)
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“…Further, [15] also describes a method to embed and detect fingerprinting code derived from GD-PBIBDs. Several fingerprinting schemes (e.g., [16], [17] and [18]) have been proposed to improve the BIBD based ACC. Remark: [11] presents non-coded fingerprinting system, which is easy to implement but the required number of spreading sequences and the computational complexity of detection would increase linearly with the number of users.…”
Section: Joint Coding-embedding Under Marking Assumptionmentioning
confidence: 99%
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“…Further, [15] also describes a method to embed and detect fingerprinting code derived from GD-PBIBDs. Several fingerprinting schemes (e.g., [16], [17] and [18]) have been proposed to improve the BIBD based ACC. Remark: [11] presents non-coded fingerprinting system, which is easy to implement but the required number of spreading sequences and the computational complexity of detection would increase linearly with the number of users.…”
Section: Joint Coding-embedding Under Marking Assumptionmentioning
confidence: 99%
“…In the last few years, several fingerprinting schemes (e.g., [16], [17] and [18]) have been proposed to enhance (v, k, 1)-BIBD based ACC. As mentioned previously, one drawback of (v, k, 1)-BIBD based ACC is the inability to support large number of users.…”
Section: Comparing Unital and Affine Plane Codes With Enhanced Accsmentioning
confidence: 99%
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“…Each selected blocks are added by anti-collusion code or lambda code. Lambda code is generated using Gaussian distributed random sequence as described in [9].…”
Section: Related Workmentioning
confidence: 99%