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Title:
shorter verifier-local revocation group signature with backward unlinkability
Author: Wei Lingbo ; Liu Jianwei
Source: Lecture Notes in Computer Science (including subseries Lecture Notes in Artificial Intelligence and Lecture Notes in Bioinformatics)
Conference Name: 4th International Conference on Pairing-Based Cryptography, Pairing 2010
Conference Date: 40878
Issued Date: 2010
Conference Place: Kaga, Japan
Keyword: Authentication ; Cryptography ; Electronic document identification systems ; Network protocols ; Network security ; Real time systems
Publish Place: Germany
Indexed Type: ei
ISSN: 3029743
ISBN: 364217454X
Department: (1) School of Electronics and Information Engineering, Beihang University, China; (2) State Key Laboratory of Information Security, Institute of Software, Chinese Academy of Sciences, China
Sponsorship: Natl. Inst. Inf. Commun. Technol. (NICT); Microsoft Research; Voltage Security; Hitachi, Ltd.; NTT Data
English Abstract: Used as the privacy-preserving attestation by Trusted Computing effort (TCG) or the privacy-preserving authentication protocol in vehicular ad hoc networks (VANETs), group signature becomes more important than ever. Membership revocation is a delicate issue in group signatures. Verifier-local revocation (VLR) is a reasonable resolution, especially for mobile environments. Back unlinkability (BU) is a currently introduced security property providing further privacy. Based on the Decision Linear (DLIN) assumption and the q-Strong Diffie-Hellman (q-SDH) assumption, a new BU-VLR group signature scheme is proposed, which has the shortest signature size and smallest computation overhead among the previous BU-VLR group signature schemes. © 2010 Springer-Verlag Berlin Heidelberg.
Language: 英语
Content Type: 会议论文
URI: http://ir.iscas.ac.cn/handle/311060/8902
Appears in Collections:中科院软件所图书馆_2010软件所会议论文

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Recommended Citation:
Wei Lingbo,Liu Jianwei. shorter verifier-local revocation group signature with backward unlinkability[C]. 见:4th International Conference on Pairing-Based Cryptography, Pairing 2010. Kaga, Japan. 40878.
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