A secure and efficient public auditing system of cloud storage based on BLS signature and automatic blocker protocol
Cloud computing is a model that enables users to store their data remotely and enjoy the applications and services provided by this model on demand through a common set of configurable computing resources, without the burden of local data storage as well as maintenance. However, users no longer have...
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Format: | Article |
Language: | English |
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Elsevier
2022-07-01
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Series: | Journal of King Saud University: Computer and Information Sciences |
Subjects: | |
Online Access: | http://www.sciencedirect.com/science/article/pii/S1319157821000756 |
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author | Baidaa Abdulrahman Jalil Taha Mohammed Hasan Ghassan Sabeeh Mahmood Hazim Noman Abed |
author_facet | Baidaa Abdulrahman Jalil Taha Mohammed Hasan Ghassan Sabeeh Mahmood Hazim Noman Abed |
author_sort | Baidaa Abdulrahman Jalil |
collection | DOAJ |
description | Cloud computing is a model that enables users to store their data remotely and enjoy the applications and services provided by this model on demand through a common set of configurable computing resources, without the burden of local data storage as well as maintenance. However, users no longer have physical possession of external data, and this makes the task of protecting data integrity in cloud computing extremely important so that users can use the cloud storage as if it were local, without worrying about the need to verify its integrity. Hence, public cloud storage auditing is critical, so users can use a Third-party auditor (TPA) to verify data integrity. In order to provide effective TPA security, the audit should not achieves any security vulnerabilities to the privacy of user data and does not provide any additional online burden to the user. In this paper, we propose an effective public auditing system for cloud data based on the signature of Boneh-Lynn-Shacham (BLS), in order to ensure public auditing and maintain data privacy. The proposed system also realizes batch auditing and data dynamic process. In addition, the proposed system enhances the level of security authentication through an Automatic Blocker Protocol (ABP) to protect the system from unauthorized TPA. An extensive security and performance analysis shows that the proposed system is very secure and effective |
first_indexed | 2024-04-13T15:44:34Z |
format | Article |
id | doaj.art-aefcc2478eb94b5e8773d43dcf7aca5b |
institution | Directory Open Access Journal |
issn | 1319-1578 |
language | English |
last_indexed | 2024-04-13T15:44:34Z |
publishDate | 2022-07-01 |
publisher | Elsevier |
record_format | Article |
series | Journal of King Saud University: Computer and Information Sciences |
spelling | doaj.art-aefcc2478eb94b5e8773d43dcf7aca5b2022-12-22T02:41:03ZengElsevierJournal of King Saud University: Computer and Information Sciences1319-15782022-07-0134740084021A secure and efficient public auditing system of cloud storage based on BLS signature and automatic blocker protocolBaidaa Abdulrahman Jalil0Taha Mohammed Hasan1Ghassan Sabeeh Mahmood2Hazim Noman Abed3Corresponding author.; University of Diyala, College of Science, Computer Science Department, Diyala, IraqUniversity of Diyala, College of Science, Computer Science Department, Diyala, IraqUniversity of Diyala, College of Science, Computer Science Department, Diyala, IraqUniversity of Diyala, College of Science, Computer Science Department, Diyala, IraqCloud computing is a model that enables users to store their data remotely and enjoy the applications and services provided by this model on demand through a common set of configurable computing resources, without the burden of local data storage as well as maintenance. However, users no longer have physical possession of external data, and this makes the task of protecting data integrity in cloud computing extremely important so that users can use the cloud storage as if it were local, without worrying about the need to verify its integrity. Hence, public cloud storage auditing is critical, so users can use a Third-party auditor (TPA) to verify data integrity. In order to provide effective TPA security, the audit should not achieves any security vulnerabilities to the privacy of user data and does not provide any additional online burden to the user. In this paper, we propose an effective public auditing system for cloud data based on the signature of Boneh-Lynn-Shacham (BLS), in order to ensure public auditing and maintain data privacy. The proposed system also realizes batch auditing and data dynamic process. In addition, the proposed system enhances the level of security authentication through an Automatic Blocker Protocol (ABP) to protect the system from unauthorized TPA. An extensive security and performance analysis shows that the proposed system is very secure and effectivehttp://www.sciencedirect.com/science/article/pii/S1319157821000756Cloud computingPublic auditingPrivacy preservingThird-party auditor |
spellingShingle | Baidaa Abdulrahman Jalil Taha Mohammed Hasan Ghassan Sabeeh Mahmood Hazim Noman Abed A secure and efficient public auditing system of cloud storage based on BLS signature and automatic blocker protocol Journal of King Saud University: Computer and Information Sciences Cloud computing Public auditing Privacy preserving Third-party auditor |
title | A secure and efficient public auditing system of cloud storage based on BLS signature and automatic blocker protocol |
title_full | A secure and efficient public auditing system of cloud storage based on BLS signature and automatic blocker protocol |
title_fullStr | A secure and efficient public auditing system of cloud storage based on BLS signature and automatic blocker protocol |
title_full_unstemmed | A secure and efficient public auditing system of cloud storage based on BLS signature and automatic blocker protocol |
title_short | A secure and efficient public auditing system of cloud storage based on BLS signature and automatic blocker protocol |
title_sort | secure and efficient public auditing system of cloud storage based on bls signature and automatic blocker protocol |
topic | Cloud computing Public auditing Privacy preserving Third-party auditor |
url | http://www.sciencedirect.com/science/article/pii/S1319157821000756 |
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