TY - GEN
T1 - Strong security enabled certificateless aggregate signatures applicable to mobile computation
AU - Hu, Xiong
AU - Wu, Qianhong
AU - Chen, Zhong
PY - 2011
Y1 - 2011
N2 - An aggregate signature scheme allows a public algorithm to aggregate n signatures of n distinct messages from n signers into a single signature. By validating the single resulting signature, one can be convinced that the messages have been endorsed by all the signers. Certificateless aggregate signatures allow the signers to authenticate messages without suffering from the complex certificate management in the traditional public key cryptography or the key escrow problem in identitybased cryptography. In this paper, we present a new efficient certificateless aggregate signature scheme. Compared with up-todate certificateless aggregate signatures, our scheme is equipped with a number of attracting features: (1) it is shown to be secure under the standard computational Diffie-Hellman assumption in the random oracle model; (2) the security is proven in the strongest security model so far; (3) the signers do not need to be synchronized; and (4) its performance is comparable to the most efficient up-to-date schemes. These features are desirable in a mobile networking and computing environment where the storage/computation capacity of the end devices are limited, and due to the wireless connection and distributed feature, the computing devices are easy to be attacked and hard to be synchronized.
AB - An aggregate signature scheme allows a public algorithm to aggregate n signatures of n distinct messages from n signers into a single signature. By validating the single resulting signature, one can be convinced that the messages have been endorsed by all the signers. Certificateless aggregate signatures allow the signers to authenticate messages without suffering from the complex certificate management in the traditional public key cryptography or the key escrow problem in identitybased cryptography. In this paper, we present a new efficient certificateless aggregate signature scheme. Compared with up-todate certificateless aggregate signatures, our scheme is equipped with a number of attracting features: (1) it is shown to be secure under the standard computational Diffie-Hellman assumption in the random oracle model; (2) the security is proven in the strongest security model so far; (3) the signers do not need to be synchronized; and (4) its performance is comparable to the most efficient up-to-date schemes. These features are desirable in a mobile networking and computing environment where the storage/computation capacity of the end devices are limited, and due to the wireless connection and distributed feature, the computing devices are easy to be attacked and hard to be synchronized.
KW - Aggregate signature
KW - Certificateless cryptography
KW - Message authentication
KW - Mobile computing
UR - https://www.scopus.com/pages/publications/84863158323
U2 - 10.1109/INCoS.2011.151
DO - 10.1109/INCoS.2011.151
M3 - 会议稿件
AN - SCOPUS:84863158323
SN - 9780769545790
T3 - Proceedings - 3rd IEEE International Conference on Intelligent Networking and Collaborative Systems, INCoS 2011
SP - 92
EP - 99
BT - Proceedings - 3rd IEEE International Conference on Intelligent Networking and Collaborative Systems, INCoS 2011
T2 - 3rd IEEE International Conference on Intelligent Networking and CollaborativeSystems, INCoS 2011
Y2 - 30 November 2011 through 2 December 2011
ER -