Title :
Provably Secure and Efficient Multi-receiver Identity-Based Generalized Signcryption Scheme
Author_Institution :
Sch. of Inf. Sci. & Technol., Univ. of Jiujiang, Jiujiang, China
Abstract :
Generalized signcryption (GSC) can adaptively work as an encryption scheme, a signature scheme or a signcryption scheme with only one algorithm and one key pair, which is very suitable for storage-constrained environments, like the embedded systems, smart cards and wireless sensor networks. In this paper, a multi-receiver identity-based generalized signcryption scheme (MID-GSC) is proposed, the formal definition and security notions are defined, and the concrete scheme is proved to be confidential under the bilinear Diffie-Hellman assumption and existentially unforgeable under the computational Diffie-Hellman assumption in the random oracle model. By using the randomness reuse technique, the scheme only needs one pairing computation to generally sign crypt a single message for n receivers. Compared with the traditional approach, the new scheme is of high efficiency.
Keywords :
cryptography; digital signatures; MID-GSC; bilinear Diffie-Hellman assumption; bilinear pairing; computational Diffie-Hellman assumption; embedded systems; encryption scheme; provably secure multireceiver identity-based generalized signcryption scheme; random oracle model; randomness reuse technique; security notions; signature scheme; smart cards; storage-constrained environments; wireless sensor networks; Adaptation models; Computational modeling; Encryption; Games; Receivers; bilinear pairing; multi-receiver identity-based generalized signcryption; random oracle model; randomness reuse;
Conference_Titel :
Information Security (ASIA JCIS), 2014 Ninth Asia Joint Conference on
Conference_Location :
Wuhan
DOI :
10.1109/AsiaJCIS.2014.10