DocumentCode
2183674
Title
Fully Distributed Multi-authority Cloud Storage Model
Author
Shengyan Wu ; Changlu Lin ; Li Xu
Author_Institution
Fujian Province Key Lab. of Network Security & Cryptology, Fujian Normal Univ., Fuzhou, China
fYear
2013
fDate
16-19 Dec. 2013
Firstpage
621
Lastpage
626
Abstract
Cloud storage is an extension concept of cloud computing and has become an interested research topic since it is convenient and cheap in many applications. In this paper, we propose a new fully distributed cloud storage model together with the attribute-based encryption technology. There are three phases in our model: the encryption phase, the data storage phase and the decryption phase. All messages in these phases are distributed through the whole process. In the encryption stage, the data owner encrypts data blocks based on attribute based encryption, and then sends each encrypted block to several random storage servers. We use the distributed erasure code to guarantee the robustness of our model in the storage phase. Our model supports one-to-many storage. Furthermore, it does not require any trusted authority since we adopt a multi-thority model in which all authorities work in each phase indpendently. We also analyze the reliability and security of our model.
Keywords
cloud computing; cryptography; storage management; attribute-based encryption technology; cloud computing; data storage phase; decryption phase; distributed erasure code; encryption phase; fully distributed multiauthority cloud storage model; one-to-many storage; random storage servers; trusted authority; Cloud computing; Computational modeling; Decoding; Encoding; Encryption; Servers; Cloud storage; attribute-based encryption; distributed erasure code; distributed storage; without central authority;
fLanguage
English
Publisher
ieee
Conference_Titel
Cloud Computing and Big Data (CloudCom-Asia), 2013 International Conference on
Conference_Location
Fuzhou
Print_ISBN
978-1-4799-2829-3
Type
conf
DOI
10.1109/CLOUDCOM-ASIA.2013.64
Filename
6821059
Link To Document