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Threshold Attribute-Based Credentials With Redactable Signature

delete2023-09-01
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OA
AI
史瑞 cover
史瑞 (Rui Shi)
H
Huamin Feng
Y
Yang Yang *
Y
Yuan Feng
Y
Yingjiu Li
H
HweeHwa Pang
R
Robert H. Deng
DOI:10.1109/TSC.2023.3280914delete
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Abstract

Abstract

En 中文
Threshold attribute-based credentials are suitable for decentralized systems such as blockchains as such systems generally assume that authenticity, confidentiality, and availability can still be guaranteed in the presence of a threshold number of dishonest or faulty nodes. Coconut (NDSS'19) was the first selective disclosure attribute-based credentials scheme supporting threshold issuance. However, it does not support threshold tracing of user identities and threshold revocation of user credentials, which is desired for internal governance such as identity management, data auditing, and accountability. The communication and computation complexities of Coconut for verifying credentials are linear in the number of each user's attributes and thus costly. Addressing these issues, we propose a novel efficient threshold attribute-based anonymous credential scheme. While retaining all the features of Coconut, our scheme supports threshold tracing of user identities and threshold revocation of user credentials, and it significantly reduces the computational and communication complexities of credential verification. In addition, we prove that our scheme enjoys strong security features, including anonymity, blindness, traceability, and non-frameability.
Keywords:
Blockchain
threshold
traceable
unlinkable redactable signature
attribute-based credentials

Journal

IEEE Transactions on Services Computing cover
IEEE Transactions on Services Computing
IF:
5.8
Papers:
2.1K
Citations:
6.5K

Organization

B
beijing university of posts & telecommunications
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U
university of oregon
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Citations: 6
S
Singapore Management University
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B
Beijing Electronic Science and Technology Institute
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387
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F
fuzhou university
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Citations: 31
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