Provably secure certificateless aggregate signature scheme in wireless roaming authentication

Certificateless aggregate signature (CLAS) schemes have been widely applied in resource-constrained wireless mobile networks,because they could not only realize batch validation but also solve the certificate management and key escrow problems.It was shown that a certificateless aggregate signature...

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Main Authors: Zhi-yan XU, Li-bing WU, Li LI, De-biao HE
Format: Article
Language:zho
Published: Editorial Department of Journal on Communications 2017-07-01
Series:Tongxin xuebao
Subjects:
Online Access:http://www.joconline.com.cn/zh/article/doi/10.11959/j.issn.1000-436x.2017152/
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author Zhi-yan XU
Li-bing WU
Li LI
De-biao HE
author_facet Zhi-yan XU
Li-bing WU
Li LI
De-biao HE
author_sort Zhi-yan XU
collection DOAJ
description Certificateless aggregate signature (CLAS) schemes have been widely applied in resource-constrained wireless mobile networks,because they could not only realize batch validation but also solve the certificate management and key escrow problems.It was shown that a certificateless aggregate signature in an anonymous roaming authentication scheme was vulnerable to the signature forge attack.To address the issue,a new secure and efficient certificateless aggregate signature scheme was presented,which required no bilinear pairing operations.And then the security of the scheme under the ECDLP assumption in the random oracle model was proved.Finally the performance of proposed scheme was evaluated.Compared with the original scheme,the proposal is more secure and the total computational cost is greatly reduced .
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institution Kabale University
issn 1000-436X
language zho
publishDate 2017-07-01
publisher Editorial Department of Journal on Communications
record_format Article
series Tongxin xuebao
spelling doaj-art-fcc28d031a32448aaf5a55a38943cf602025-01-14T07:12:37ZzhoEditorial Department of Journal on CommunicationsTongxin xuebao1000-436X2017-07-013812313059711046Provably secure certificateless aggregate signature scheme in wireless roaming authenticationZhi-yan XULi-bing WULi LIDe-biao HECertificateless aggregate signature (CLAS) schemes have been widely applied in resource-constrained wireless mobile networks,because they could not only realize batch validation but also solve the certificate management and key escrow problems.It was shown that a certificateless aggregate signature in an anonymous roaming authentication scheme was vulnerable to the signature forge attack.To address the issue,a new secure and efficient certificateless aggregate signature scheme was presented,which required no bilinear pairing operations.And then the security of the scheme under the ECDLP assumption in the random oracle model was proved.Finally the performance of proposed scheme was evaluated.Compared with the original scheme,the proposal is more secure and the total computational cost is greatly reduced .http://www.joconline.com.cn/zh/article/doi/10.11959/j.issn.1000-436x.2017152/provably securecertificatelessaggregate signatureresist forgery attack
spellingShingle Zhi-yan XU
Li-bing WU
Li LI
De-biao HE
Provably secure certificateless aggregate signature scheme in wireless roaming authentication
Tongxin xuebao
provably secure
certificateless
aggregate signature
resist forgery attack
title Provably secure certificateless aggregate signature scheme in wireless roaming authentication
title_full Provably secure certificateless aggregate signature scheme in wireless roaming authentication
title_fullStr Provably secure certificateless aggregate signature scheme in wireless roaming authentication
title_full_unstemmed Provably secure certificateless aggregate signature scheme in wireless roaming authentication
title_short Provably secure certificateless aggregate signature scheme in wireless roaming authentication
title_sort provably secure certificateless aggregate signature scheme in wireless roaming authentication
topic provably secure
certificateless
aggregate signature
resist forgery attack
url http://www.joconline.com.cn/zh/article/doi/10.11959/j.issn.1000-436x.2017152/
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AT libingwu provablysecurecertificatelessaggregatesignatureschemeinwirelessroamingauthentication
AT lili provablysecurecertificatelessaggregatesignatureschemeinwirelessroamingauthentication
AT debiaohe provablysecurecertificatelessaggregatesignatureschemeinwirelessroamingauthentication