DocumentCode
1016080
Title
Lattice-Based Threshold Changeability for Standard Shamir Secret-Sharing Schemes
Author
Steinfeld, Ron ; Pieprzyk, Josef ; Wang, Huaxiong
Author_Institution
Macquarie Univ., Sydney
Volume
53
Issue
7
fYear
2007
fDate
7/1/2007 12:00:00 AM
Firstpage
2542
Lastpage
2559
Abstract
We consider the problem of increasing the threshold parameter of a secret-sharing scheme after the setup (share distribution) phase, without further communication between the dealer and the shareholders. Previous solutions to this problem require one to start off with a nonstandard scheme designed specifically for this purpose, or to have communication between shareholders. In contrast, we show how to increase the threshold parameter of the standard Shamir secret-sharing scheme without communication between the shareholders. Our technique can thus be applied to existing Shamir schemes even if they were set up without consideration to future threshold increases. Our method is a new positive cryptographic application for lattice reduction algorithms, inspired by recent work on lattice-based list decoding of Reed-Solomon codes with noise bounded in the Lee norm. We use fundamental results from the theory of lattices (geometry of numbers) to prove quantitative statements about the information-theoretic security of our construction. These lattice-based security proof techniques may be of independent interest.
Keywords
Reed-Solomon codes; cryptography; telecommunication security; Lee norm; Reed-Solomon codes; Shamir secret-sharing schemes; information-theoretic security; lattice reduction algorithms; lattice-based list decoding; lattice-based security proof techniques; lattice-based threshold changeability; positive cryptographic application; threshold parameter; Communication standards; Cryptography; Decoding; File servers; Information geometry; Information security; Lattices; Noise reduction; Polynomials; Robustness; Changeable threshold; Shamir secret-sharing; geometry of numbers; lattice reduction;
fLanguage
English
Journal_Title
Information Theory, IEEE Transactions on
Publisher
ieee
ISSN
0018-9448
Type
jour
DOI
10.1109/TIT.2007.899541
Filename
4252349
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