Visible to the public Identity-Based Distributed Provable Data Possession in Multicloud Storage

TitleIdentity-Based Distributed Provable Data Possession in Multicloud Storage
Publication TypeJournal Article
Year of Publication2015
AuthorsHuaqun Wang
JournalServices Computing, IEEE Transactions on
Volume8
Pagination328-340
Date PublishedMarch
ISSN1939-1374
Keywordsbilinear pairings, CDH problem, cloud computing, computational Diffie-Hellman problem, Computational modeling, cryptographic protocols, data integrity, delegated verification, distributed computing, Distributed databases, formal system model, formal verification, ID-DPDP protocol, identity-based cryptography, identity-based distributed provable data possession, Indexes, integrity checking protocol, multicloud servers, multicloud storage, outsourced data, private key cryptography, private verification, Protocols, provable data possession, public key cryptography, public verification, remote data integrity checking model, security, security model, Servers, storage management
Abstract

Remote data integrity checking is of crucial importance in cloud storage. It can make the clients verify whether their outsourced data is kept intact without downloading the whole data. In some application scenarios, the clients have to store their data on multicloud servers. At the same time, the integrity checking protocol must be efficient in order to save the verifier's cost. From the two points, we propose a novel remote data integrity checking model: ID-DPDP (identity-based distributed provable data possession) in multicloud storage. The formal system model and security model are given. Based on the bilinear pairings, a concrete ID-DPDP protocol is designed. The proposed ID-DPDP protocol is provably secure under the hardness assumption of the standard CDH (computational Diffie-Hellman) problem. In addition to the structural advantage of elimination of certificate management, our ID-DPDP protocol is also efficient and flexible. Based on the client's authorization, the proposed ID-DPDP protocol can realize private verification, delegated verification, and public verification.

DOI10.1109/TSC.2014.1
Citation Key6762896