TY - JOUR
T1 - Signatures in hierarchical certificateless cryptography
T2 - Efficient constructions and provable security
AU - Zhang, Lei
AU - Wu, Qianhong
AU - Domingo-Ferrer, Josep
AU - Qin, Bo
AU - Zeng, Peng
PY - 2014/7/10
Y1 - 2014/7/10
N2 - Many efforts have been devoted in recent years to constructing secure schemes in certificateless cryptography. The aim is to eliminate the key escrow problem of identity-based cryptography. However, most of the work takes place in traditional certificateless cryptography, which suffers from the single-point problem. Hierarchical cryptography exploits a practical security model to mirror the organizational hierarchy in the real world and hence can eliminate the single-point problem. To incorporate the advantages of both types of cryptosystems, in this paper we instantiate hierarchical certificateless cryptography by formalizing the notion of hierarchical certificateless signatures. A concrete hierarchical certificateless signature scheme is also proposed. The security of our scheme is proven under the computational Diffie-Hellman assumption. As to efficiency, our scheme has constant complexity, regardless of the depth of the hierarchy. Therefore, our proposal is secure and scalable.
AB - Many efforts have been devoted in recent years to constructing secure schemes in certificateless cryptography. The aim is to eliminate the key escrow problem of identity-based cryptography. However, most of the work takes place in traditional certificateless cryptography, which suffers from the single-point problem. Hierarchical cryptography exploits a practical security model to mirror the organizational hierarchy in the real world and hence can eliminate the single-point problem. To incorporate the advantages of both types of cryptosystems, in this paper we instantiate hierarchical certificateless cryptography by formalizing the notion of hierarchical certificateless signatures. A concrete hierarchical certificateless signature scheme is also proposed. The security of our scheme is proven under the computational Diffie-Hellman assumption. As to efficiency, our scheme has constant complexity, regardless of the depth of the hierarchy. Therefore, our proposal is secure and scalable.
KW - Certificateless cryptography
KW - Hierarchical certificateless signature
KW - Hierarchical cryptography
UR - https://www.scopus.com/pages/publications/84899471806
U2 - 10.1016/j.ins.2014.02.085
DO - 10.1016/j.ins.2014.02.085
M3 - 文章
AN - SCOPUS:84899471806
SN - 0020-0255
VL - 272
SP - 223
EP - 237
JO - Information Sciences
JF - Information Sciences
ER -