A searchable personal health records framework with fine-grained access control in cloud-fog computing.

Fog computing can extend cloud computing to the edge of the network so as to reduce latency and network congestion. However, existing encryption schemes were rarely used in fog environment, resulting in high computational and storage overhead. Aiming at the demands of local information for terminal...

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Main Authors: Jin Sun, Xiaojing Wang, Shangping Wang, Lili Ren
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2018-01-01
Series:PLoS ONE
Online Access:https://doi.org/10.1371/journal.pone.0207543
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spelling doaj-513a8d9e5e4b4f448f92e21f2409c5862021-03-03T21:04:59ZengPublic Library of Science (PLoS)PLoS ONE1932-62032018-01-011311e020754310.1371/journal.pone.0207543A searchable personal health records framework with fine-grained access control in cloud-fog computing.Jin SunXiaojing WangShangping WangLili RenFog computing can extend cloud computing to the edge of the network so as to reduce latency and network congestion. However, existing encryption schemes were rarely used in fog environment, resulting in high computational and storage overhead. Aiming at the demands of local information for terminal device and the shortcomings of cloud computing framework in supporting mobile applications, by taking the hospital scene as an example, a searchable personal health records framework with fine-grained access control in cloud-fog computing is proposed. The proposed framework combines the attribute-based encryption (ABE) technology and search encryption (SE) technology to implement keyword search function and fine-grained access control ability. When keyword index and trapdoor match are successful, the cloud server provider only returns relevant search results to the user, thus achieving a more accurate search. At the same time, the scheme is multi-authority, and the key leakage problem is solved by dividing the user secret key distribution task. Moreover, in the proposed scheme, we securely outsource part of the encryption and decryption operations to the fog node. It is effective both in local resources and in resource-constrained mobile devices. Based on the decisional q-parallel bilinear Diffie-Hellman exponent (q-DBDHE) assumption and decisional bilinear Diffie-Hellman (DBDH) assumption, our scheme is proven to be secure. Simulation experiments show that our scheme is efficient in the cloud-fog environment.https://doi.org/10.1371/journal.pone.0207543
collection DOAJ
language English
format Article
sources DOAJ
author Jin Sun
Xiaojing Wang
Shangping Wang
Lili Ren
spellingShingle Jin Sun
Xiaojing Wang
Shangping Wang
Lili Ren
A searchable personal health records framework with fine-grained access control in cloud-fog computing.
PLoS ONE
author_facet Jin Sun
Xiaojing Wang
Shangping Wang
Lili Ren
author_sort Jin Sun
title A searchable personal health records framework with fine-grained access control in cloud-fog computing.
title_short A searchable personal health records framework with fine-grained access control in cloud-fog computing.
title_full A searchable personal health records framework with fine-grained access control in cloud-fog computing.
title_fullStr A searchable personal health records framework with fine-grained access control in cloud-fog computing.
title_full_unstemmed A searchable personal health records framework with fine-grained access control in cloud-fog computing.
title_sort searchable personal health records framework with fine-grained access control in cloud-fog computing.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2018-01-01
description Fog computing can extend cloud computing to the edge of the network so as to reduce latency and network congestion. However, existing encryption schemes were rarely used in fog environment, resulting in high computational and storage overhead. Aiming at the demands of local information for terminal device and the shortcomings of cloud computing framework in supporting mobile applications, by taking the hospital scene as an example, a searchable personal health records framework with fine-grained access control in cloud-fog computing is proposed. The proposed framework combines the attribute-based encryption (ABE) technology and search encryption (SE) technology to implement keyword search function and fine-grained access control ability. When keyword index and trapdoor match are successful, the cloud server provider only returns relevant search results to the user, thus achieving a more accurate search. At the same time, the scheme is multi-authority, and the key leakage problem is solved by dividing the user secret key distribution task. Moreover, in the proposed scheme, we securely outsource part of the encryption and decryption operations to the fog node. It is effective both in local resources and in resource-constrained mobile devices. Based on the decisional q-parallel bilinear Diffie-Hellman exponent (q-DBDHE) assumption and decisional bilinear Diffie-Hellman (DBDH) assumption, our scheme is proven to be secure. Simulation experiments show that our scheme is efficient in the cloud-fog environment.
url https://doi.org/10.1371/journal.pone.0207543
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