Blockchain-based public auditing and secure deduplication with fair arbitration

Data auditing enables data owners to verify the integrity of their sensitive data stored at an untrusted cloud without retrieving them. This feature has been widely adopted by commercial cloud storage. However, the existing approaches still have some drawbacks. On the one hand, the existing schemes...

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Main Authors: YUAN, Haoran, CHEN, Xiaofeng, WANG, Jianfeng, YUAN, Jiaming, YAN, Hongyang, SUSILO, Willy
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Language:English
Published: Institutional Knowledge at Singapore Management University 2020
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Online Access:https://ink.library.smu.edu.sg/sis_research/5367
https://ink.library.smu.edu.sg/context/sis_research/article/6371/viewcontent/Blockchain_based_public_auditing_av.pdf
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Institution: Singapore Management University
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spelling sg-smu-ink.sis_research-63712020-11-19T06:56:15Z Blockchain-based public auditing and secure deduplication with fair arbitration YUAN, Haoran CHEN, Xiaofeng WANG, Jianfeng YUAN, Jiaming YAN, Hongyang SUSILO, Willy Data auditing enables data owners to verify the integrity of their sensitive data stored at an untrusted cloud without retrieving them. This feature has been widely adopted by commercial cloud storage. However, the existing approaches still have some drawbacks. On the one hand, the existing schemes have a defect of fair arbitration, i.e., existing auditing schemes lack an effective method to punish the malicious cloud service provider (CSP) and compensate users whose data integrity is destroyed. On the other hand, a CSP may store redundant and repetitive data. These redundant data inevitably increase management overhead and computational cost during the whole data life cycle. To address these challenges, we propose a blockchain-based public auditing and secure deduplication scheme with fair arbitration. By using a smart contract, our scheme supports automatic penalization of the malicious CSP and compensates users whose data integrity is damaged. Moreover, our scheme introduces a message-locked encryption algorithm and removes the random masking in data auditing. Compared with the existing schemes, our scheme can effectively reduce the computational cost of tag verification and data storage costs. We give a comprehensive analysis to demonstrate the correctness of the proposed scheme in terms of storage, batch auditing, and data consistency. Also, extensive experiments conducted on the platform of Ethereum blockchain demonstrate the efficiency and effectiveness of our scheme. 2020-12-01T08:00:00Z text application/pdf https://ink.library.smu.edu.sg/sis_research/5367 info:doi/10.1016/j.ins.2020.07.005 https://ink.library.smu.edu.sg/context/sis_research/article/6371/viewcontent/Blockchain_based_public_auditing_av.pdf http://creativecommons.org/licenses/by-nc-nd/4.0/ Research Collection School Of Computing and Information Systems eng Institutional Knowledge at Singapore Management University Blockchain Data auditing Fair arbitration Data deduplication Databases and Information Systems Finance and Financial Management Technology and Innovation
institution Singapore Management University
building SMU Libraries
continent Asia
country Singapore
Singapore
content_provider SMU Libraries
collection InK@SMU
language English
topic Blockchain
Data auditing
Fair arbitration
Data deduplication
Databases and Information Systems
Finance and Financial Management
Technology and Innovation
spellingShingle Blockchain
Data auditing
Fair arbitration
Data deduplication
Databases and Information Systems
Finance and Financial Management
Technology and Innovation
YUAN, Haoran
CHEN, Xiaofeng
WANG, Jianfeng
YUAN, Jiaming
YAN, Hongyang
SUSILO, Willy
Blockchain-based public auditing and secure deduplication with fair arbitration
description Data auditing enables data owners to verify the integrity of their sensitive data stored at an untrusted cloud without retrieving them. This feature has been widely adopted by commercial cloud storage. However, the existing approaches still have some drawbacks. On the one hand, the existing schemes have a defect of fair arbitration, i.e., existing auditing schemes lack an effective method to punish the malicious cloud service provider (CSP) and compensate users whose data integrity is destroyed. On the other hand, a CSP may store redundant and repetitive data. These redundant data inevitably increase management overhead and computational cost during the whole data life cycle. To address these challenges, we propose a blockchain-based public auditing and secure deduplication scheme with fair arbitration. By using a smart contract, our scheme supports automatic penalization of the malicious CSP and compensates users whose data integrity is damaged. Moreover, our scheme introduces a message-locked encryption algorithm and removes the random masking in data auditing. Compared with the existing schemes, our scheme can effectively reduce the computational cost of tag verification and data storage costs. We give a comprehensive analysis to demonstrate the correctness of the proposed scheme in terms of storage, batch auditing, and data consistency. Also, extensive experiments conducted on the platform of Ethereum blockchain demonstrate the efficiency and effectiveness of our scheme.
format text
author YUAN, Haoran
CHEN, Xiaofeng
WANG, Jianfeng
YUAN, Jiaming
YAN, Hongyang
SUSILO, Willy
author_facet YUAN, Haoran
CHEN, Xiaofeng
WANG, Jianfeng
YUAN, Jiaming
YAN, Hongyang
SUSILO, Willy
author_sort YUAN, Haoran
title Blockchain-based public auditing and secure deduplication with fair arbitration
title_short Blockchain-based public auditing and secure deduplication with fair arbitration
title_full Blockchain-based public auditing and secure deduplication with fair arbitration
title_fullStr Blockchain-based public auditing and secure deduplication with fair arbitration
title_full_unstemmed Blockchain-based public auditing and secure deduplication with fair arbitration
title_sort blockchain-based public auditing and secure deduplication with fair arbitration
publisher Institutional Knowledge at Singapore Management University
publishDate 2020
url https://ink.library.smu.edu.sg/sis_research/5367
https://ink.library.smu.edu.sg/context/sis_research/article/6371/viewcontent/Blockchain_based_public_auditing_av.pdf
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