DocumentCode
110659
Title
Semantically Secure Lattice Codes for the Gaussian Wiretap Channel
Author
Cong Ling ; Luzzi, L. ; Belfiore, Jean-Claude ; Stehle, Damien
Author_Institution
Dept. of Electr. & Electron. Eng., Imperial Coll. London, London, CA, USA
Volume
60
Issue
10
fYear
2014
fDate
Oct. 2014
Firstpage
6399
Lastpage
6416
Abstract
We propose a new scheme of wiretap lattice coding that achieves semantic security and strong secrecy over the Gaussian wiretap channel. The key tool in our security proof is the flatness factor, which characterizes the convergence of the conditional output distributions corresponding to different messages and leads to an upper bound on the information leakage. We not only introduce the notion of secrecy-good lattices, but also propose the flatness factor as a design criterion of such lattices. Both the modulo-lattice Gaussian channel and genuine Gaussian channel are considered. In the latter case, we propose a novel secrecy coding scheme based on the discrete Gaussian distribution over a lattice, which achieves the secrecy capacity to within a half nat under mild conditions. No a priori distribution of the message is assumed, and no dither is used in our proposed schemes.
Keywords
Gaussian channels; codes; telecommunication security; Gaussian wiretap channel; conditional output distribution; discrete Gaussian distribution; flatness factor; genuine Gaussian channel; information leakage; modulo lattice Gaussian channel; secrecy coding; secrecy good lattice; semantically secure lattice codes; wiretap lattice coding; Encoding; Gaussian distribution; Lattices; Mutual information; Security; Semantics; Zinc; Lattice coding; information theoretic security; semantic security; strong secrecy; wiretap channel;
fLanguage
English
Journal_Title
Information Theory, IEEE Transactions on
Publisher
ieee
ISSN
0018-9448
Type
jour
DOI
10.1109/TIT.2014.2343226
Filename
6866169
Link To Document