Lightweight anonymous authentication protocol for resource-constrained smart home devices based on elliptic curve cryptography

被引:30
作者
Nyangaresi, Vincent Omollo [1 ]
机构
[1] Tom Mboya Univ Coll, Fac Biol & Sci, Homabay, Kenya
关键词
Smart homes; Security; Privacy; Authentication; Attacks; Protocol; SCHEME;
D O I
10.1016/j.sysarc.2022.102763
中图分类号
TP3 [计算技术、计算机技术];
学科分类号
0812 ;
摘要
The communication channel between the smart home devices and the remote users is susceptible to numerous privacy and security compromise attacks. To address these issues, many authentication protocols have been developed. However, majority of these security schemes have vulnerabilities that may still be exploited to wreck havoc in smart homes. For instance, protocols based on low entropy passwords can be broken by polynomial time adversaries. Apart from security and privacy challenges, efficiency of the entire authentication process is another challenge that needs to be solved. To this end, most of the conventional smart home authentication protocols incur extensive storage, computation as well as communication overheads which are unsuitable for resource limited smart home devices. In this paper, an anonymous lightweight protocol is developed, based on one-way hashing and elliptic curve point multiplication operations. Formal verification of this protocol is executed using ProVerif while its informal security analysis demonstrates its robustness against majority of the smart home privacy and security attacks. In terms of operational efficiency, comparative analysis is carried out which shows that it incurs relatively low computation, storage and communication overheads.
引用
收藏
页数:11
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共 45 条
[1]   Novel certificateless Chebyshev chaotic map-based key agreement protocol for advanced metering infrastructure [J].
Abbasinezhad-Mood, Dariush ;
Ostad-Sharif, Arezou ;
Nikooghadam, Morteza ;
Mazinani, Sayyed Majid .
JOURNAL OF SUPERCOMPUTING, 2021, 77 (08) :8082-8110
[2]   Novel chaotic map-based privacy-preserving authenticated key agreement scheme without the electricity service provider involvement [J].
Abbasinezhad-Mood, Dariush ;
Ostad-Sharif, Arezou ;
Nikooghadam, Morteza .
SECURITY AND PRIVACY, 2019, 2 (05)
[3]   LAPTAS: lightweight anonymous privacy-preserving three-factor authentication scheme for WSN-based IIoT [J].
Abdi Nasib Far, Hossein ;
Bayat, Majid ;
Kumar Das, Ashok ;
Fotouhi, Mahdi ;
Pournaghi, S. Morteza ;
Doostari, M. A. .
WIRELESS NETWORKS, 2021, 27 (02) :1389-1412
[4]   A security authorization scheme for smart home Internet of Things devices [J].
Chifor, Bogdan-Cosmin ;
Bica, Ion ;
Patriciu, Victor-Valeriu ;
Pop, Florin .
FUTURE GENERATION COMPUTER SYSTEMS-THE INTERNATIONAL JOURNAL OF ESCIENCE, 2018, 86 :740-749
[5]   Frequency-Minimal Utility-Maximal Moving Target Defense Against DDoS in SDN-Based Systems [J].
Debroy, Saptarshi ;
Calyam, Prasad ;
Minh Nguyen ;
Neupane, Roshan Lal ;
Mukherjee, Bidyut ;
Eeralla, Ajay Kumar ;
Salah, Khaled .
IEEE TRANSACTIONS ON NETWORK AND SERVICE MANAGEMENT, 2020, 17 (02) :890-903
[6]   Secure remote anonymous user authentication scheme for smart home environment [J].
Fakroon, Moneer ;
Alshahrani, Mohammed ;
Gebali, Fayez ;
Traore, Issa .
INTERNET OF THINGS, 2020, 9
[7]   Security Analysis of Emerging Smart Home Applications [J].
Fernandes, Earlence ;
Jung, Jaeyeon ;
Prakash, Atul .
2016 IEEE SYMPOSIUM ON SECURITY AND PRIVACY (SP), 2016, :636-654
[8]   Teegraph: A Blockchain consensus algorithm based on TEE and DAG for data sharing in IoT [J].
Fu Xiang ;
Wang Huaimin ;
Shi Peichang ;
Zhang Xunhui .
JOURNAL OF SYSTEMS ARCHITECTURE, 2022, 122
[9]   EPAW: Efficient Privacy Preserving Anonymous Mutual Authentication Scheme for Wireless Body Area Networks (WBANs) [J].
Jegadeesan, Subramani ;
Azees, Maria ;
Babu, N. Ramesh ;
Subramaniam, Umashankar ;
Almakhles, J. Dhafer .
IEEE ACCESS, 2020, 8 :48576-48586
[10]   PSpSys: A time-predictable mixed-criticality system architecture based on ARM TrustZone [J].
Jiang, Zhe ;
Dong, Pan ;
Wei, Ran ;
Zhao, Qingling ;
Wang, Yankai ;
Zhu, Dizhong ;
Zhuang, Yan ;
Audsley, Neil .
JOURNAL OF SYSTEMS ARCHITECTURE, 2022, 123