DocumentCode
1556655
Title
On the Security and Efficiency of Content Distribution via Network Coding
Author
Li, Qiming ; Lui, John C S ; Chiu, Dah-Ming
Author_Institution
Cryptography & Security Dept., Inst. for Infocomm Res., Singapore, Singapore
Volume
9
Issue
2
fYear
2012
Firstpage
211
Lastpage
221
Abstract
Content distribution via network coding has received a lot of attention lately. However, direct application of network coding may be insecure. In particular, attackers can inject "bogus” data to corrupt the content distribution process so as to hinder the information dispersal or even deplete the network resource. Therefore, content verification is an important and practical issue when network coding is employed. When random linear network coding is used, it is infeasible for the source of the content to sign all the data, and hence, the traditional "hash-and-sign” methods are no longer applicable. Recently, a new on-the-fly verification technique has been proposed by Krohn et al. (IEEE S&P \´04), which employs a classical homomorphic hash function. However, this technique is difficult to be applied to network coding because of high computational and communication overhead. We explore this issue further by carefully analyzing different types of overhead, and propose methods to help reducing both the computational and communication cost, and provide provable security at the same time.
Keywords
computer network security; cryptography; formal verification; linear codes; network coding; random codes; telecommunication computing; bogus data; classical homomorphic hash function; communication overhead; computational overhead; content distribution process; content verification; hash-and-sign methods; information dispersal; network resource; on-the-fly verification technique; random linear network coding; Content manageent; Cryptography; Encoding; Network coding; Peer to peer computing; Polynomials; Verification; Content distribution; network coding.; security; verification;
fLanguage
English
Journal_Title
Dependable and Secure Computing, IEEE Transactions on
Publisher
ieee
ISSN
1545-5971
Type
jour
DOI
10.1109/TDSC.2011.32
Filename
5887350
Link To Document