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1. 重庆邮电大学通信与信息工程学院,重庆 400065
2. 重庆邮电大学移动通信技术重庆市重点实验室,重庆 400065
3. 武汉大学电子信息学院,湖北 武汉 430072
[ "张海波(1979- ),男,重庆人,博士,重庆邮电大学副教授、硕士生导师,主要研究方向为车联网、安全认证、密钥协商等" ]
[ "陈舟(1999- ),男,四川遂宁人,重庆邮电大学硕士生,主要研究方向为车联网、安全认证、密钥协商" ]
[ "黄宏武(1994- ),男,湖北孝感人,重庆邮电大学硕士生,主要研究方向为车联网、区块链、认证协议" ]
[ "贺晓帆(1985- ),男,河北保定人,博士,武汉大学教授,主要研究方向为资源优化、安全认证等" ]
网络出版日期:2022-01,
纸质出版日期:2022-01-25
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张海波, 陈舟, 黄宏武, 等. VANET系统中基于中国剩余定理的群内相互认证密钥协商协议[J]. 通信学报, 2022,43(1):182-193.
Haibo ZHANG, Zhou CHEN, Hongwu HUANG, et al. Intra-group mutual authentication key agreement protocol based on Chinese remainder theorem in VANET system[J]. Journal on communications, 2022, 43(1): 182-193.
张海波, 陈舟, 黄宏武, 等. VANET系统中基于中国剩余定理的群内相互认证密钥协商协议[J]. 通信学报, 2022,43(1):182-193. DOI: 10.11959/j.issn.1000-436x.2022002.
Haibo ZHANG, Zhou CHEN, Hongwu HUANG, et al. Intra-group mutual authentication key agreement protocol based on Chinese remainder theorem in VANET system[J]. Journal on communications, 2022, 43(1): 182-193. DOI: 10.11959/j.issn.1000-436x.2022002.
针对车载自组网(VANET)系统中车辆在公开网络上相互通信容易受到恶意攻击的问题,提出一种VANET系统中群内相互认证密钥协商协议。利用中国剩余定理建立动态车辆群,以适应VANET拓扑的快速变化。通信双方利用签名信息快速认证消息发送方的身份,并通过切比雪夫混沌映射的半群性进行密钥协商。采用假名更新和私钥更新机制,保护车辆的身份隐私安全。对于恶意车辆的身份,利用签名信息进行准确追溯,并通过修改公钥信息实现快速撤销。此外,使用 BAN 逻辑模型证明了协议的语义安全。仿真结果表明,所提协议相较于现有同类方案,能有效降低通信消耗,并显著降低计算消耗。
Aiming at the problem that vehicles in the vehicular ad-hoc network (VANET) system were vulnerable to malicious attacks when communicating with each other on the public network
a mutual authentication key agreement protocol in the VANET was proposed.A dynamic vehicle group was established by the Chinese remainder theorem to adapt to the rapid changes in the VANET topology.Signature information was used by both parties in communication to quickly authenticate the identity of the message sender
and key agreement was conduct through the semigroup of Chebyshev chaotic mapping.The pseudonym update and private key update mechanism were adopted to protect the privacy and security of the vehicle’s identity.The identities of malicious vehicles were tracked accurately by using signature information
and were revoked quickly by modifying the public key information.In addition
the semantic security of the protocol was proved by the BAN logic model.The simulation results show that the proposed protocol can effectively reduce the communication consumption and significantly reduce the computational consumption compared with the existing similar literature.
CHENG J J , CHENG J L , ZHOU M C , et al . Routing in Internet of vehicles:a review [J ] . IEEE Transactions on Intelligent Transportation Systems , 2015 , 16 ( 5 ): 2339 - 2352 .
JIANG D , TALIWAL V , MEIER A , et al . Design of 5.9 GHz DSRC-based vehicular safety communication [J ] . IEEE Wireless Communications , 2006 , 13 ( 5 ): 36 - 43 .
LAI C Z , ZHANG K , CAO J , et al . SPIR:a secure and privacy-preserving incentive scheme for reliable real-time map updates [J ] . IEEE Internet of Things Journal , 2020 , 7 ( 1 ): 416 - 428 .
LAI C Z , ZHANG M , CHENG N , et al . SIRC:a secure incentive scheme for reliable cooperative downloading in highway VANETs [J ] . IEEE Transactions on Intelligent Transportation Systems , 2017 , 18 ( 6 ): 1559 - 1574 .
CHEN Z M , ZHAO J G , HUANG B Y . Optimizing PKI for 3GPP authentication and key agreement [C ] // Proceedings of 2012 Fourth International Conference on Multimedia Information Networking and Security . Piscataway:IEEE Press , 2012 : 79 - 82 .
LU R , LIN X , ZHU H , et al . ECPP:efficient conditional privacy preservation protocol for secure vehicular communications [C ] // Proceedings of IEEE INFOCOM 2008 - The 27th Conference on Computer Communications . Piscataway:IEEE Press , 2008 : 1229 - 1237 .
SHAMIR A , . Identity-based cryptosystems and signature schemes [C ] // Advances in Cryptology . Berlin:Springer , 1985 : 47 - 53 .
HOJJATI M , SHAFIEINEJAD A , YANIKOMEROGLU H . A blockchain-based authentication and key agreement (AKA) protocol for 5G networks [J ] . IEEE Access , 2020 , 8 : 216461 - 216476 .
XU J B , MENG X W , LIANG W , et al . A secure mutual authentication scheme of blockchain-based in WBANs [J ] . China Communications , 2020 , 17 ( 9 ): 34 - 49 .
陈若昕 , 陈杰 , 张跃宇 , 等 . 无证书非对称群密钥协商协议 [J ] . 密码学报 , 2016 , 3 ( 4 ): 382 - 398 .
CHEN R X , CHEN J , ZHANG Y Y , et al . Certificateless asymmetric group key agreement [J ] . Journal of Cryptologic Research , 2016 , 3 ( 4 ): 382 - 398 .
杜红珍 , 温巧燕 . 无证书强指定验证者多重签名 [J ] . 通信学报 , 2016 , 37 ( 6 ): 20 - 28 .
DU H Z , WEN Q Y . Certificateless strong designated verifier multi-signature [J ] . Journal on Communications , 2016 , 37 ( 6 ): 20 - 28 .
PORKODI C , ARUMUGANATHAN R . Group-oriented signature schemes based on Chinese remainder theorem [C ] // Proceedings of 2009 World Congress on Nature & Biologically Inspired Computing (NaBIC) . Piscataway:IEEE Press , 2009 : 1661 - 1664 .
ZHANG J , CUI J , ZHONG H , et al . PA-CRT:Chinese remainder theorem based conditional privacy-preserving authentication scheme in vehicular ad-hoc networks [J ] . IEEE Transactions on Dependable and Secure Computing , 2021 , 18 ( 2 ): 722 - 735 .
YOON E J , JEON I S . An efficient and secure Diffie-Hellman key agreement protocol based on Chebyshev chaotic map [J ] . Communications in Nonlinear Science and Numerical Simulation , 2011 , 16 ( 6 ): 2383 - 2389 .
KOCAREV L , TASEV Z . Public-key encryption based on Chebyshev maps [C ] // Proceedings of the 2003 International Symposium on Circuits and Systems . Piscataway:IEEE Press , 2003 : 28 - 31 .
CUI J , WANG Y L , ZHANG J , et al . Full session key agreement scheme based on chaotic map in vehicular ad-hoc networks [J ] . IEEE Transactions on Vehicular Technology , 2020 , 69 ( 8 ): 8914 - 8924 .
ZHANG L H . Cryptanalysis of the public key encryption based on multiple chaotic systems [J ] . Chaos,Solitons & Fractals , 2008 , 37 ( 3 ): 669 - 674 .
BURROWS M , ABADI M , NEEDHAM R . A logic of authentication [J ] . ACM Transactions on Computer Systems , 1990 , 8 ( 1 ): 18 - 36 .
MATHEW N , UMA V . VANET security-analysis and survey [C ] // Proceedings of 2018 International Conference on Control,Power,Communication and Computing Technologies (ICCPCCT) . Piscataway:IEEE Press , 2018 : 100 - 106 .
BAGGA P , DAS A K , WAZID M , et al . On the design of mutual authentication and key agreement protocol in Internet of vehicles-enabled intelligent transportation system [J ] . IEEE Transactions on Vehicular Technology , 2021 , 70 ( 2 ): 1736 - 1751 .
YING B D , NAYAK A . Anonymous and lightweight authentication for secure vehicular networks [J ] . IEEE Transactions on Vehicular Technology , 2017 , 66 ( 12 ): 10626 - 10636 .
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