Title
Efficient proxy signatures based on trapdoor hash functions
Abstract
Proxy signatures have found extensive use in authenticating agents acting on behalf of users in applications such as grid computing, communications systems, personal digital assistants, information management and e-commerce. Importance of proxy signatures has been repeatedly highlighted by applied cryptographers through different variations, namely threshold proxy signatures, blind proxy signatures and so forth. Unfortunately, most recent constructions of proxy signatures only improve on minor weaknesses of previously built schemes, and most often do not deliver formal security guarantees. In this study, the authors propose a technique to construct provably secure proxy signature schemes using trapdoor hash functions that can be used to authenticate and authorised agents acting on behalf of users in agent-based computing systems. They demonstrate the effectiveness of their approach for creating practical instances by constructing a discrete log-based instantiation of the proposed generic technique that achieves superior performance in terms of verification overhead and signature size compared with existing proxy signature schemes. Formal definitions, security specifications and a detailed theoretical analysis, including correctness, security and performance, of the proposed proxy signature scheme have been provided.
Year
DOI
Venue
2010
10.1049/iet-ifs.2009.0204
Information Security, IET
Keywords
Field
DocType
cryptography,digital signatures,software agents,agent authentication,blind proxy signature scheme,communications systems,cryptography,discrete log-based instantiation,e-commerce,formal security,grid computing,information management,personal digital assistants,threshold proxy signature scheme,trapdoor hash functions
Grid computing,Authentication,Computer science,Cryptography,Correctness,Software agent,Theoretical computer science,Digital signature,Hash function,Discrete logarithm
Journal
Volume
Issue
ISSN
4
4
1751-8709
Citations 
PageRank 
References 
6
0.57
9
Authors
4
Name
Order
Citations
PageRank
Santosh Chandrasekhar1836.29
Saikat Chakrabarti218821.86
Mukesh Singhal32602259.07
Kenneth L. Calvert41840350.51