An efficient and expressive ciphertext-policy attribute-based encryption scheme with partially hidden access structures, revisited
Ciphertext-policy attribute-based encryption (CP-ABE) has been regarded as one of the promising solutions to protect data security and privacy in cloud storage services. In a CP-ABE scheme, an access structure is included in the ciphertext, which, however, may leak sensitive information about the un...
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sg-smu-ink.sis_research-53992019-07-04T08:02:41Z An efficient and expressive ciphertext-policy attribute-based encryption scheme with partially hidden access structures, revisited CUI, Hui DENG, Robert H. LAI, Junzuo YI, Xun NEPAL, Surya Ciphertext-policy attribute-based encryption (CP-ABE) has been regarded as one of the promising solutions to protect data security and privacy in cloud storage services. In a CP-ABE scheme, an access structure is included in the ciphertext, which, however, may leak sensitive information about the underlying plaintext and the privileged recipients in that anyone who sees the ciphertext is able to learn the attributes of the privileged recipients from the associated access structure. In order to address this issue, CP-ABE with partially hidden access structures was introduced where each attribute is divided into an attribute name and an attribute value and the attribute values of the attributes in an access structure are not given in the ciphertext. Though a number of CP-ABE schemes with partially hidden access structures have been proposed, most of them only enable restricted access structures, whereas several other schemes supporting expressive access structures are computationally inefficient due to the fact that they are built in the composite-order groups. To our knowledge, there has been little attention paid to the design of expressive CP-ABE schemes with partially hidden access structures in the prime-order groups. In this paper, we revisit this problem, and present an expressive CP-ABE scheme supporting partially hidden access structures in the prime-order groups with improved efficiency. 2018-03-01T08:00:00Z text application/pdf https://ink.library.smu.edu.sg/sis_research/4396 info:doi/10.1016/j.comnet.2018.01.034 https://ink.library.smu.edu.sg/context/sis_research/article/5399/viewcontent/efficient_and_expressive_ciphertext_policy_revisited_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 Access control Cloud storage Data security and privacy Information Security |
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Access control Cloud storage Data security and privacy Information Security CUI, Hui DENG, Robert H. LAI, Junzuo YI, Xun NEPAL, Surya An efficient and expressive ciphertext-policy attribute-based encryption scheme with partially hidden access structures, revisited |
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Ciphertext-policy attribute-based encryption (CP-ABE) has been regarded as one of the promising solutions to protect data security and privacy in cloud storage services. In a CP-ABE scheme, an access structure is included in the ciphertext, which, however, may leak sensitive information about the underlying plaintext and the privileged recipients in that anyone who sees the ciphertext is able to learn the attributes of the privileged recipients from the associated access structure. In order to address this issue, CP-ABE with partially hidden access structures was introduced where each attribute is divided into an attribute name and an attribute value and the attribute values of the attributes in an access structure are not given in the ciphertext. Though a number of CP-ABE schemes with partially hidden access structures have been proposed, most of them only enable restricted access structures, whereas several other schemes supporting expressive access structures are computationally inefficient due to the fact that they are built in the composite-order groups. To our knowledge, there has been little attention paid to the design of expressive CP-ABE schemes with partially hidden access structures in the prime-order groups. In this paper, we revisit this problem, and present an expressive CP-ABE scheme supporting partially hidden access structures in the prime-order groups with improved efficiency. |
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text |
author |
CUI, Hui DENG, Robert H. LAI, Junzuo YI, Xun NEPAL, Surya |
author_facet |
CUI, Hui DENG, Robert H. LAI, Junzuo YI, Xun NEPAL, Surya |
author_sort |
CUI, Hui |
title |
An efficient and expressive ciphertext-policy attribute-based encryption scheme with partially hidden access structures, revisited |
title_short |
An efficient and expressive ciphertext-policy attribute-based encryption scheme with partially hidden access structures, revisited |
title_full |
An efficient and expressive ciphertext-policy attribute-based encryption scheme with partially hidden access structures, revisited |
title_fullStr |
An efficient and expressive ciphertext-policy attribute-based encryption scheme with partially hidden access structures, revisited |
title_full_unstemmed |
An efficient and expressive ciphertext-policy attribute-based encryption scheme with partially hidden access structures, revisited |
title_sort |
efficient and expressive ciphertext-policy attribute-based encryption scheme with partially hidden access structures, revisited |
publisher |
Institutional Knowledge at Singapore Management University |
publishDate |
2018 |
url |
https://ink.library.smu.edu.sg/sis_research/4396 https://ink.library.smu.edu.sg/context/sis_research/article/5399/viewcontent/efficient_and_expressive_ciphertext_policy_revisited_2018_afv.pdf |
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