Compact hierarchical IBE from lattices in the standard model

At Crypto’10, Agrawal et al. proposed a lattice-based selectively secure Hierarchical Identity-based Encryption (HIBE) scheme (ABB10b) with small ciphertext on the condition that (the length of identity at each level) is small in the standard model. In this paper, we present another lattice-based se...

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Main Authors: ZHANG, Daode, FANG, Fuyang, LI, Bao, XUE, Haiyang, LIANG, Bei
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Language:English
Published: Institutional Knowledge at Singapore Management University 2017
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Online Access:https://ink.library.smu.edu.sg/sis_research/9183
https://ink.library.smu.edu.sg/context/sis_research/article/10188/viewcontent/compact.pdf
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spelling sg-smu-ink.sis_research-101882024-08-13T05:23:08Z Compact hierarchical IBE from lattices in the standard model ZHANG, Daode FANG, Fuyang LI, Bao XUE, Haiyang LIANG, Bei At Crypto’10, Agrawal et al. proposed a lattice-based selectively secure Hierarchical Identity-based Encryption (HIBE) scheme (ABB10b) with small ciphertext on the condition that (the length of identity at each level) is small in the standard model. In this paper, we present another lattice-based selectively secure HIBE scheme with depth d, using a gadget matrix with enough large to replace the matrix in the HIBE scheme proposed by Agrawal et al. at Eurocrypt’10. In our HIBE scheme, not only the size of ciphertext at level is larger than the size in ABB10b and at least smaller than the sizes in the previous HIBE schemes except ABB10b, but also the size of the master public key is at least O(d) times smaller than the previous schemes. 2017-12-01T08:00:00Z text application/pdf https://ink.library.smu.edu.sg/sis_research/9183 info:doi/10.1007/978-3-319-89500-0_19 https://ink.library.smu.edu.sg/context/sis_research/article/10188/viewcontent/compact.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 Lattices Hierarchical identity-based encryption Selectively secure Compact public parameters Information Security
institution Singapore Management University
building SMU Libraries
continent Asia
country Singapore
Singapore
content_provider SMU Libraries
collection InK@SMU
language English
topic Lattices
Hierarchical identity-based encryption
Selectively secure
Compact public parameters
Information Security
spellingShingle Lattices
Hierarchical identity-based encryption
Selectively secure
Compact public parameters
Information Security
ZHANG, Daode
FANG, Fuyang
LI, Bao
XUE, Haiyang
LIANG, Bei
Compact hierarchical IBE from lattices in the standard model
description At Crypto’10, Agrawal et al. proposed a lattice-based selectively secure Hierarchical Identity-based Encryption (HIBE) scheme (ABB10b) with small ciphertext on the condition that (the length of identity at each level) is small in the standard model. In this paper, we present another lattice-based selectively secure HIBE scheme with depth d, using a gadget matrix with enough large to replace the matrix in the HIBE scheme proposed by Agrawal et al. at Eurocrypt’10. In our HIBE scheme, not only the size of ciphertext at level is larger than the size in ABB10b and at least smaller than the sizes in the previous HIBE schemes except ABB10b, but also the size of the master public key is at least O(d) times smaller than the previous schemes.
format text
author ZHANG, Daode
FANG, Fuyang
LI, Bao
XUE, Haiyang
LIANG, Bei
author_facet ZHANG, Daode
FANG, Fuyang
LI, Bao
XUE, Haiyang
LIANG, Bei
author_sort ZHANG, Daode
title Compact hierarchical IBE from lattices in the standard model
title_short Compact hierarchical IBE from lattices in the standard model
title_full Compact hierarchical IBE from lattices in the standard model
title_fullStr Compact hierarchical IBE from lattices in the standard model
title_full_unstemmed Compact hierarchical IBE from lattices in the standard model
title_sort compact hierarchical ibe from lattices in the standard model
publisher Institutional Knowledge at Singapore Management University
publishDate 2017
url https://ink.library.smu.edu.sg/sis_research/9183
https://ink.library.smu.edu.sg/context/sis_research/article/10188/viewcontent/compact.pdf
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