Identity-based encryption transformation for flexible sharing of encrypted data in public cloud

With the rapid development of cloud computing, an increasing number of individuals and organizations are sharing data in the public cloud. To protect the privacy of data stored in the cloud, a data owner usually encrypts his data in such a way that certain designated data users can decrypt the data....

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Main Authors: DENG, Robert H., QIN, Zheng, WU, Qianhong, GUAN, Zhenyu, WANG, Yujue, ZHOU, Yunya
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Language:English
Published: Institutional Knowledge at Singapore Management University 2020
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Online Access:https://ink.library.smu.edu.sg/sis_research/7129
https://ink.library.smu.edu.sg/context/sis_research/article/8132/viewcontent/IEEETIFS_IBET_Deng__1_.pdf
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Institution: Singapore Management University
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spelling sg-smu-ink.sis_research-81322022-04-22T04:33:06Z Identity-based encryption transformation for flexible sharing of encrypted data in public cloud DENG, Robert H. QIN, Zheng WU, Qianhong GUAN, Zhenyu DENG, Robert H. WANG, Yujue ZHOU, Yunya With the rapid development of cloud computing, an increasing number of individuals and organizations are sharing data in the public cloud. To protect the privacy of data stored in the cloud, a data owner usually encrypts his data in such a way that certain designated data users can decrypt the data. This raises a serious problem when the encrypted data needs to be shared to more people beyond those initially designated by the data owner. To address this problem, we introduce and formalize an identity-based encryption transformation (IBET) model by seamlessly integrating two well-established encryption mechanisms, namely identity-basedencryption (IBE) and identity-based broadcast encryption (IBBE). In IBET, data users are identified and authorized for data access based on their recognizable identities, which avoids complicated certificate management in usual secure distributed systems. More importantly, IBET provides a transformation mechanism that converts an IBE ciphertext into an IBBE ciphertext so that a new group of users not specified during the IBE encryption can access the underlying data. We design a concrete IBET scheme based on bilinear groups and prove its security against powerful attacks. Thorough theoretical and experimental analyses demonstrate the high efficiency and practicability of the proposed scheme. 2020-04-01T07:00:00Z text application/pdf https://ink.library.smu.edu.sg/sis_research/7129 info:doi/10.1109/TIFS.2020.2985532 https://ink.library.smu.edu.sg/context/sis_research/article/8132/viewcontent/IEEETIFS_IBET_Deng__1_.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 Cloud computing Data sharing Data privacy Access control Cryptographic encryption Information Security
institution Singapore Management University
building SMU Libraries
continent Asia
country Singapore
Singapore
content_provider SMU Libraries
collection InK@SMU
language English
topic Cloud computing
Data sharing
Data privacy
Access control
Cryptographic encryption
Information Security
spellingShingle Cloud computing
Data sharing
Data privacy
Access control
Cryptographic encryption
Information Security
DENG, Robert H.
QIN, Zheng
WU, Qianhong
GUAN, Zhenyu
DENG, Robert H.
WANG, Yujue
ZHOU, Yunya
Identity-based encryption transformation for flexible sharing of encrypted data in public cloud
description With the rapid development of cloud computing, an increasing number of individuals and organizations are sharing data in the public cloud. To protect the privacy of data stored in the cloud, a data owner usually encrypts his data in such a way that certain designated data users can decrypt the data. This raises a serious problem when the encrypted data needs to be shared to more people beyond those initially designated by the data owner. To address this problem, we introduce and formalize an identity-based encryption transformation (IBET) model by seamlessly integrating two well-established encryption mechanisms, namely identity-basedencryption (IBE) and identity-based broadcast encryption (IBBE). In IBET, data users are identified and authorized for data access based on their recognizable identities, which avoids complicated certificate management in usual secure distributed systems. More importantly, IBET provides a transformation mechanism that converts an IBE ciphertext into an IBBE ciphertext so that a new group of users not specified during the IBE encryption can access the underlying data. We design a concrete IBET scheme based on bilinear groups and prove its security against powerful attacks. Thorough theoretical and experimental analyses demonstrate the high efficiency and practicability of the proposed scheme.
format text
author DENG, Robert H.
QIN, Zheng
WU, Qianhong
GUAN, Zhenyu
DENG, Robert H.
WANG, Yujue
ZHOU, Yunya
author_facet DENG, Robert H.
QIN, Zheng
WU, Qianhong
GUAN, Zhenyu
DENG, Robert H.
WANG, Yujue
ZHOU, Yunya
author_sort DENG, Robert H.
title Identity-based encryption transformation for flexible sharing of encrypted data in public cloud
title_short Identity-based encryption transformation for flexible sharing of encrypted data in public cloud
title_full Identity-based encryption transformation for flexible sharing of encrypted data in public cloud
title_fullStr Identity-based encryption transformation for flexible sharing of encrypted data in public cloud
title_full_unstemmed Identity-based encryption transformation for flexible sharing of encrypted data in public cloud
title_sort identity-based encryption transformation for flexible sharing of encrypted data in public cloud
publisher Institutional Knowledge at Singapore Management University
publishDate 2020
url https://ink.library.smu.edu.sg/sis_research/7129
https://ink.library.smu.edu.sg/context/sis_research/article/8132/viewcontent/IEEETIFS_IBET_Deng__1_.pdf
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