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Secured and Privacy-Preserving Multi-Authority Access Control System for Cloud-Based Healthcare Data Sharing

With continuous advancements in Internet technology and the increased use of cryptographic techniques, the cloud has become the obvious choice for data sharing. Generally, the data are outsourced to cloud storage servers in encrypted form. Access control methods can be used on encrypted outsourced d...

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Autores principales: Gupta, Reetu, Kanungo, Priyesh, Dagdee, Nirmal, Madhu, Golla, Sahoo, Kshira Sagar, Jhanjhi, N. Z., Masud, Mehedi, Almalki, Nabil Sharaf, AlZain, Mohammed A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10007450/
https://www.ncbi.nlm.nih.gov/pubmed/36904822
http://dx.doi.org/10.3390/s23052617
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author Gupta, Reetu
Kanungo, Priyesh
Dagdee, Nirmal
Madhu, Golla
Sahoo, Kshira Sagar
Jhanjhi, N. Z.
Masud, Mehedi
Almalki, Nabil Sharaf
AlZain, Mohammed A.
author_facet Gupta, Reetu
Kanungo, Priyesh
Dagdee, Nirmal
Madhu, Golla
Sahoo, Kshira Sagar
Jhanjhi, N. Z.
Masud, Mehedi
Almalki, Nabil Sharaf
AlZain, Mohammed A.
author_sort Gupta, Reetu
collection PubMed
description With continuous advancements in Internet technology and the increased use of cryptographic techniques, the cloud has become the obvious choice for data sharing. Generally, the data are outsourced to cloud storage servers in encrypted form. Access control methods can be used on encrypted outsourced data to facilitate and regulate access. Multi-authority attribute-based encryption is a propitious technique to control who can access encrypted data in inter-domain applications such as sharing data between organizations, sharing data in healthcare, etc. The data owner may require the flexibility to share the data with known and unknown users. The known or closed-domain users may be internal employees of the organization, and unknown or open-domain users may be outside agencies, third-party users, etc. In the case of closed-domain users, the data owner becomes the key issuing authority, and in the case of open-domain users, various established attribute authorities perform the task of key issuance. Privacy preservation is also a crucial requirement in cloud-based data-sharing systems. This work proposes the SP-MAACS scheme, a secure and privacy-preserving multi-authority access control system for cloud-based healthcare data sharing. Both open and closed domain users are considered, and policy privacy is ensured by only disclosing the names of policy attributes. The values of the attributes are kept hidden. Characteristic comparison with similar existing schemes shows that our scheme simultaneously provides features such as multi-authority setting, expressive and flexible access policy structure, privacy preservation, and scalability. The performance analysis carried out by us shows that the decryption cost is reasonable enough. Furthermore, the scheme is demonstrated to be adaptively secure under the standard model.
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spelling pubmed-100074502023-03-12 Secured and Privacy-Preserving Multi-Authority Access Control System for Cloud-Based Healthcare Data Sharing Gupta, Reetu Kanungo, Priyesh Dagdee, Nirmal Madhu, Golla Sahoo, Kshira Sagar Jhanjhi, N. Z. Masud, Mehedi Almalki, Nabil Sharaf AlZain, Mohammed A. Sensors (Basel) Article With continuous advancements in Internet technology and the increased use of cryptographic techniques, the cloud has become the obvious choice for data sharing. Generally, the data are outsourced to cloud storage servers in encrypted form. Access control methods can be used on encrypted outsourced data to facilitate and regulate access. Multi-authority attribute-based encryption is a propitious technique to control who can access encrypted data in inter-domain applications such as sharing data between organizations, sharing data in healthcare, etc. The data owner may require the flexibility to share the data with known and unknown users. The known or closed-domain users may be internal employees of the organization, and unknown or open-domain users may be outside agencies, third-party users, etc. In the case of closed-domain users, the data owner becomes the key issuing authority, and in the case of open-domain users, various established attribute authorities perform the task of key issuance. Privacy preservation is also a crucial requirement in cloud-based data-sharing systems. This work proposes the SP-MAACS scheme, a secure and privacy-preserving multi-authority access control system for cloud-based healthcare data sharing. Both open and closed domain users are considered, and policy privacy is ensured by only disclosing the names of policy attributes. The values of the attributes are kept hidden. Characteristic comparison with similar existing schemes shows that our scheme simultaneously provides features such as multi-authority setting, expressive and flexible access policy structure, privacy preservation, and scalability. The performance analysis carried out by us shows that the decryption cost is reasonable enough. Furthermore, the scheme is demonstrated to be adaptively secure under the standard model. MDPI 2023-02-27 /pmc/articles/PMC10007450/ /pubmed/36904822 http://dx.doi.org/10.3390/s23052617 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Gupta, Reetu
Kanungo, Priyesh
Dagdee, Nirmal
Madhu, Golla
Sahoo, Kshira Sagar
Jhanjhi, N. Z.
Masud, Mehedi
Almalki, Nabil Sharaf
AlZain, Mohammed A.
Secured and Privacy-Preserving Multi-Authority Access Control System for Cloud-Based Healthcare Data Sharing
title Secured and Privacy-Preserving Multi-Authority Access Control System for Cloud-Based Healthcare Data Sharing
title_full Secured and Privacy-Preserving Multi-Authority Access Control System for Cloud-Based Healthcare Data Sharing
title_fullStr Secured and Privacy-Preserving Multi-Authority Access Control System for Cloud-Based Healthcare Data Sharing
title_full_unstemmed Secured and Privacy-Preserving Multi-Authority Access Control System for Cloud-Based Healthcare Data Sharing
title_short Secured and Privacy-Preserving Multi-Authority Access Control System for Cloud-Based Healthcare Data Sharing
title_sort secured and privacy-preserving multi-authority access control system for cloud-based healthcare data sharing
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10007450/
https://www.ncbi.nlm.nih.gov/pubmed/36904822
http://dx.doi.org/10.3390/s23052617
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