Title :
Threshold Proxy Signature Scheme with Strong Real-Time Efficiency
Author :
Xiaoming Wang ; Huoyan Chen
Author_Institution :
Dept. of Comput. Sci., Jinan Univ., Guangzhou
Abstract :
The threshold proxy signature scheme with strong real-time efficiency is proposed based on a trapdoor hash function and the sharing secret technology. In the scheme, the procedure of generating threshold proxy signature is performed in two phases. The off-line phase generates a threshold proxy pre-signature before the message to be signed is even known. The pre-signature is independent of the particular message to be signed and is stored for future in the on-line phase. While on-line phase generates quickly a threshold proxy signature using the pre-signature once the message to be signed is presented. The on-line phase is typically very fast and strong real-time efficiency since it only needs a few modular additions and multiplications and one round of communication among proxy signers. Furthermore, the scheme not only has strong real-time efficiency, but also withstands the conspiracy attack existed in the previous schemes and requires no trusted third party. The scheme is particularly useful for requiring the strong real-time efficiency and fully distributed networks such as electric wallet or smart cards etc.
Keywords :
digital signatures; public key cryptography; elliptic curve discrete logarithm problem; offline phase signature generation; sharing secret technology; strong real-time efficiency; threshold proxy group signature scheme; trapdoor hash function; Computer science; Computer security; Elliptic curve cryptography; Information security; Mobile agents; Polynomials; Protocols; Secure storage; Smart cards; Space technology; Cryptography; On-line/Off-line; Signature; Threshold proxy signature; real-time efficiency;
Conference_Titel :
Information Assurance and Security, 2008. ISIAS '08. Fourth International Conference on
Conference_Location :
Naples
Print_ISBN :
978-0-7695-3324-7