Secure smart health with privacy-aware aggregate authentication and access control in Internet of Things

With the rapid technological advancements in the Internet of Things (IoT), wireless communication and cloud computing, smart health is expected to enable comprehensive and qualified healthcare services. It is important to ensure security and efficiency in smart health. However, existing smart health...

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Main Authors: ZHANG, Yinghui, DENG, Robert H., HAN, Gang, ZHENG, Dong
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Language:English
Published: Institutional Knowledge at Singapore Management University 2018
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Online Access:https://ink.library.smu.edu.sg/sis_research/4214
https://ink.library.smu.edu.sg/context/sis_research/article/5217/viewcontent/Secure_smart_health_privacy_awre_2018_afv.pdf
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Institution: Singapore Management University
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spelling sg-smu-ink.sis_research-52172020-01-14T14:37:30Z Secure smart health with privacy-aware aggregate authentication and access control in Internet of Things ZHANG, Yinghui DENG, Robert H. HAN, Gang ZHENG, Dong With the rapid technological advancements in the Internet of Things (IoT), wireless communication and cloud computing, smart health is expected to enable comprehensive and qualified healthcare services. It is important to ensure security and efficiency in smart health. However, existing smart health systems still have challenging issues, such as aggregate authentication, fine-grained access control and privacy protection. In this paper, we address these issues by introducing SSH, a Secure Smart Health system with privacy-aware aggregate authentication and access control in IoT. In SSH, privacy-aware aggregate authentication is enabled by an anonymous certificateless aggregate signature scheme, in which users' identity information is protected based on symmetric encryption mechanisms. In addition, privacy-aware access control is based on anonymous attribute-based encryption technologies. Our formal security proofs indicate that SSH achieves batch authentication and non-repudiation under the Computational Diffie-Hellman assumption. Extensive experimental results and performance comparisons show that SSH is practical in terms of computation cost and communication overheads. 2018-12-01T08:00:00Z text application/pdf https://ink.library.smu.edu.sg/sis_research/4214 info:doi/10.1016/j.jnca.2018.09.005 https://ink.library.smu.edu.sg/context/sis_research/article/5217/viewcontent/Secure_smart_health_privacy_awre_2018_afv.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 Smart health Security Privacy Aggregate authentication Access control Information Security Medicine and Health Sciences
institution Singapore Management University
building SMU Libraries
continent Asia
country Singapore
Singapore
content_provider SMU Libraries
collection InK@SMU
language English
topic Smart health
Security
Privacy
Aggregate authentication
Access control
Information Security
Medicine and Health Sciences
spellingShingle Smart health
Security
Privacy
Aggregate authentication
Access control
Information Security
Medicine and Health Sciences
ZHANG, Yinghui
DENG, Robert H.
HAN, Gang
ZHENG, Dong
Secure smart health with privacy-aware aggregate authentication and access control in Internet of Things
description With the rapid technological advancements in the Internet of Things (IoT), wireless communication and cloud computing, smart health is expected to enable comprehensive and qualified healthcare services. It is important to ensure security and efficiency in smart health. However, existing smart health systems still have challenging issues, such as aggregate authentication, fine-grained access control and privacy protection. In this paper, we address these issues by introducing SSH, a Secure Smart Health system with privacy-aware aggregate authentication and access control in IoT. In SSH, privacy-aware aggregate authentication is enabled by an anonymous certificateless aggregate signature scheme, in which users' identity information is protected based on symmetric encryption mechanisms. In addition, privacy-aware access control is based on anonymous attribute-based encryption technologies. Our formal security proofs indicate that SSH achieves batch authentication and non-repudiation under the Computational Diffie-Hellman assumption. Extensive experimental results and performance comparisons show that SSH is practical in terms of computation cost and communication overheads.
format text
author ZHANG, Yinghui
DENG, Robert H.
HAN, Gang
ZHENG, Dong
author_facet ZHANG, Yinghui
DENG, Robert H.
HAN, Gang
ZHENG, Dong
author_sort ZHANG, Yinghui
title Secure smart health with privacy-aware aggregate authentication and access control in Internet of Things
title_short Secure smart health with privacy-aware aggregate authentication and access control in Internet of Things
title_full Secure smart health with privacy-aware aggregate authentication and access control in Internet of Things
title_fullStr Secure smart health with privacy-aware aggregate authentication and access control in Internet of Things
title_full_unstemmed Secure smart health with privacy-aware aggregate authentication and access control in Internet of Things
title_sort secure smart health with privacy-aware aggregate authentication and access control in internet of things
publisher Institutional Knowledge at Singapore Management University
publishDate 2018
url https://ink.library.smu.edu.sg/sis_research/4214
https://ink.library.smu.edu.sg/context/sis_research/article/5217/viewcontent/Secure_smart_health_privacy_awre_2018_afv.pdf
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