Non-Repudiable Provable Data Possession Scheme With Designated Verifier in Cloud Storage Systems

In cloud storage systems, users can upload their data along with associated tags (authentication information) to cloud storage servers. To ensure the availability and integrity of the outsourced data, provable data possession (PDP) schemes convince verifiers (users or third parties) that the outsour...

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Main Authors: Tsu-Yang Wu, Yuh-Min Tseng, Sen-Shan Huang, Yi-Chen Lai
Format: Article
Language:English
Published: IEEE 2017-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/8039158/
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spelling doaj-131424bd628a4861aa63592357c0f3032021-03-29T20:13:28ZengIEEEIEEE Access2169-35362017-01-015193331934110.1109/ACCESS.2017.27532438039158Non-Repudiable Provable Data Possession Scheme With Designated Verifier in Cloud Storage SystemsTsu-Yang Wu0Yuh-Min Tseng1https://orcid.org/0000-0003-0860-7766Sen-Shan Huang2Yi-Chen Lai3Fujian Provincial Key Laboratory of Big Data Mining and Applications, Fujian University of Technology, Fuzhou, ChinaDepartment of Mathematics, National Changhua University of Education, Changhua, TaiwanDepartment of Mathematics, National Changhua University of Education, Changhua, TaiwanDepartment of Mathematics, National Changhua University of Education, Changhua, TaiwanIn cloud storage systems, users can upload their data along with associated tags (authentication information) to cloud storage servers. To ensure the availability and integrity of the outsourced data, provable data possession (PDP) schemes convince verifiers (users or third parties) that the outsourced data stored in the cloud storage server is correct and unchanged. Recently, several PDP schemes with designated verifier (DV-PDP) were proposed to provide the flexibility of arbitrary designated verifier. A designated verifier (private verifier) is trustable and designated by a user to check the integrity of the outsourced data. However, these DV-PDP schemes are either inefficient or insecure under some circumstances. In this paper, we propose the first non-repudiable PDP scheme with designated verifier (DV-NRPDP) to address the non-repudiation issue and resolve possible disputations between users and cloud storage servers. We define the system model, framework and adversary model of DV-NRPDP schemes. Afterward, a concrete DV-NRPDP scheme is presented. Based on the computing discrete logarithm assumption, we formally prove that the proposed DV-NRPDP scheme is secure against several forgery attacks in the random oracle model. Comparisons with the previously proposed schemes are given to demonstrate the advantages of our scheme.https://ieeexplore.ieee.org/document/8039158/Cloud storagedata integritynon-repudiationprovable data possessionprivate auditabilitydesignated verifier
collection DOAJ
language English
format Article
sources DOAJ
author Tsu-Yang Wu
Yuh-Min Tseng
Sen-Shan Huang
Yi-Chen Lai
spellingShingle Tsu-Yang Wu
Yuh-Min Tseng
Sen-Shan Huang
Yi-Chen Lai
Non-Repudiable Provable Data Possession Scheme With Designated Verifier in Cloud Storage Systems
IEEE Access
Cloud storage
data integrity
non-repudiation
provable data possession
private auditability
designated verifier
author_facet Tsu-Yang Wu
Yuh-Min Tseng
Sen-Shan Huang
Yi-Chen Lai
author_sort Tsu-Yang Wu
title Non-Repudiable Provable Data Possession Scheme With Designated Verifier in Cloud Storage Systems
title_short Non-Repudiable Provable Data Possession Scheme With Designated Verifier in Cloud Storage Systems
title_full Non-Repudiable Provable Data Possession Scheme With Designated Verifier in Cloud Storage Systems
title_fullStr Non-Repudiable Provable Data Possession Scheme With Designated Verifier in Cloud Storage Systems
title_full_unstemmed Non-Repudiable Provable Data Possession Scheme With Designated Verifier in Cloud Storage Systems
title_sort non-repudiable provable data possession scheme with designated verifier in cloud storage systems
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2017-01-01
description In cloud storage systems, users can upload their data along with associated tags (authentication information) to cloud storage servers. To ensure the availability and integrity of the outsourced data, provable data possession (PDP) schemes convince verifiers (users or third parties) that the outsourced data stored in the cloud storage server is correct and unchanged. Recently, several PDP schemes with designated verifier (DV-PDP) were proposed to provide the flexibility of arbitrary designated verifier. A designated verifier (private verifier) is trustable and designated by a user to check the integrity of the outsourced data. However, these DV-PDP schemes are either inefficient or insecure under some circumstances. In this paper, we propose the first non-repudiable PDP scheme with designated verifier (DV-NRPDP) to address the non-repudiation issue and resolve possible disputations between users and cloud storage servers. We define the system model, framework and adversary model of DV-NRPDP schemes. Afterward, a concrete DV-NRPDP scheme is presented. Based on the computing discrete logarithm assumption, we formally prove that the proposed DV-NRPDP scheme is secure against several forgery attacks in the random oracle model. Comparisons with the previously proposed schemes are given to demonstrate the advantages of our scheme.
topic Cloud storage
data integrity
non-repudiation
provable data possession
private auditability
designated verifier
url https://ieeexplore.ieee.org/document/8039158/
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