Research on password-authenticated key exchange protocol over lattices

With the rapid development of quantum computing technology, password-authenticated key exchange (PAKE) protocol based on conventional difficult problems will face serious security threats in the post-quantum era.Lattice-based cryptosystem has been certified by NIST as the most promising cryptosystem...

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Main Authors: Yuanbo GUO, Anqi YIN
Format: Article
Language:zho
Published: Editorial Department of Journal on Communications 2022-12-01
Series:Tongxin xuebao
Subjects:
Online Access:http://www.joconline.com.cn/zh/article/doi/10.11959/j.issn.1000-436x.2022190/
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author Yuanbo GUO
Anqi YIN
author_facet Yuanbo GUO
Anqi YIN
author_sort Yuanbo GUO
collection DOAJ
description With the rapid development of quantum computing technology, password-authenticated key exchange (PAKE) protocol based on conventional difficult problems will face serious security threats in the post-quantum era.Lattice-based cryptosystem has been certified by NIST as the most promising cryptosystem in the post-quantum era due to its high efficiency, high security and support for stronger cryptographic service functions (such as fully homomorphic encryption and multi-linear mapping).Firstly, the research progress of lattice-based PAKE protocol was systematically sort out, mainly including the centralized two-party, three-party PAKE protocol and the distributed PAKE protocol over lattices.Then, the relevant typical schemes were compared and analyzed, respectively.Finally, the future research directions PAKE protocol over lattices were prospected.
format Article
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institution Kabale University
issn 1000-436X
language zho
publishDate 2022-12-01
publisher Editorial Department of Journal on Communications
record_format Article
series Tongxin xuebao
spelling doaj-art-f4dede2e21464c4cb13424346b529b602025-01-14T06:28:40ZzhoEditorial Department of Journal on CommunicationsTongxin xuebao1000-436X2022-12-014317218759391218Research on password-authenticated key exchange protocol over latticesYuanbo GUOAnqi YINWith the rapid development of quantum computing technology, password-authenticated key exchange (PAKE) protocol based on conventional difficult problems will face serious security threats in the post-quantum era.Lattice-based cryptosystem has been certified by NIST as the most promising cryptosystem in the post-quantum era due to its high efficiency, high security and support for stronger cryptographic service functions (such as fully homomorphic encryption and multi-linear mapping).Firstly, the research progress of lattice-based PAKE protocol was systematically sort out, mainly including the centralized two-party, three-party PAKE protocol and the distributed PAKE protocol over lattices.Then, the relevant typical schemes were compared and analyzed, respectively.Finally, the future research directions PAKE protocol over lattices were prospected.http://www.joconline.com.cn/zh/article/doi/10.11959/j.issn.1000-436x.2022190/password-authenticated key exchangelatticeprovably securequantum resistance
spellingShingle Yuanbo GUO
Anqi YIN
Research on password-authenticated key exchange protocol over lattices
Tongxin xuebao
password-authenticated key exchange
lattice
provably secure
quantum resistance
title Research on password-authenticated key exchange protocol over lattices
title_full Research on password-authenticated key exchange protocol over lattices
title_fullStr Research on password-authenticated key exchange protocol over lattices
title_full_unstemmed Research on password-authenticated key exchange protocol over lattices
title_short Research on password-authenticated key exchange protocol over lattices
title_sort research on password authenticated key exchange protocol over lattices
topic password-authenticated key exchange
lattice
provably secure
quantum resistance
url http://www.joconline.com.cn/zh/article/doi/10.11959/j.issn.1000-436x.2022190/
work_keys_str_mv AT yuanboguo researchonpasswordauthenticatedkeyexchangeprotocoloverlattices
AT anqiyin researchonpasswordauthenticatedkeyexchangeprotocoloverlattices