DocumentCode :
1436385
Title :
Privacy-Preserving Decentralized Key-Policy Attribute-Based Encryption
Author :
Han, Jinguang ; Susilo, Willy ; Mu, Yi ; Yan, Jun
Author_Institution :
Centre for Comput. & Inf. Security Res., Univ. of Wollongong, Wollongong, NSW, Australia
Volume :
23
Issue :
11
fYear :
2012
Firstpage :
2150
Lastpage :
2162
Abstract :
Decentralized attribute-based encryption (ABE) is a variant of a multiauthority ABE scheme where each authority can issue secret keys to the user independently without any cooperation and a central authority. This is in contrast to the previous constructions, where multiple authorities must be online and setup the system interactively, which is impractical. Hence, it is clear that a decentralized ABE scheme eliminates the heavy communication cost and the need for collaborative computation in the setup stage. Furthermore, every authority can join or leave the system freely without the necessity of reinitializing the system. In contemporary multiauthority ABE schemes, a user´s secret keys from different authorities must be tied to his global identifier (GID) to resist the collusion attack. However, this will compromise the user´s privacy. Multiple authorities can collaborate to trace the user by his GID, collect his attributes, then impersonate him. Therefore, constructing a decentralized ABE scheme with privacy-preserving remains a challenging research problem. In this paper, we propose a privacy-preserving decentralized key-policy ABE scheme where each authority can issue secret keys to a user independently without knowing anything about his GID. Therefore, even if multiple authorities are corrupted, they cannot collect the user´s attributes by tracing his GID. Notably, our scheme only requires standard complexity assumptions (e.g., decisional bilinear Diffie-Hellman) and does not require any cooperation between the multiple authorities, in contrast to the previous comparable scheme that requires nonstandard complexity assumptions (e.g., q-decisional Diffie-Hellman inversion) and interactions among multiple authorities. To the best of our knowledge, it is the first decentralized ABE scheme with privacy-preserving based on standard complexity assumptions.
Keywords :
cryptography; data privacy; GID; attribute-based encryption; central authority; collaborative computation; collusion attack; contemporary multiauthority schemes; decisional bilinear Diffie-Hellman; global identifier; multiple authorities; nonstandard complexity assumptions; privacy-preserving decentralized key-policy ABE scheme; q-decisional Diffie-Hellman inversion; secret keys; standard complexity assumptions; user attributes; user privacy; Access control; Educational institutions; Encryption; Polynomials; Protocols; Attribute-based encryption; access control; multiauthority; privacy; privacy-preserving extract protocol;
fLanguage :
English
Journal_Title :
Parallel and Distributed Systems, IEEE Transactions on
Publisher :
ieee
ISSN :
1045-9219
Type :
jour
DOI :
10.1109/TPDS.2012.50
Filename :
6143930
Link To Document :
بازگشت