Quantum-Resistant Cryptography for the Internet of Things Based on Location-Based Lattices

被引:13
作者
Althobaiti, Ohood Saud [1 ]
Dohler, Mischa [1 ]
机构
[1] Kings Coll London, Dept Engn, London WC2R 2LS, England
关键词
Cryptography; Security; Internet of Things; Quantum computing; Protocols; Lattices; Computers; Cryptosystem; quantum-resistant cryptography; lattices; localization; location; Narrow-Band Internet of Things; POSITION; VERIFICATION; LOCALIZATION;
D O I
10.1109/ACCESS.2021.3115087
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
An important enabler of the Internet of Things (IoT) is the Narrow-Band Internet of Things (NB-IoT) technology, which is a 3GPP standards compliant connectivity solution. Quantum computing, another emerging technological paradigm, promises novel compute opportunities but is also able to compromise cybersecurity ciphers. Therefore, improved methods to mitigate such security threats are needed. In this research, we propose a location-aware cryptographic system that guarantees post-quantum IoT security. The ultimate value of a location-driven cryptosystem is to use the geographic location as a player's identity and credential. Position-driven cryptography using lattices is efficient and lightweight, and it can be used to protect sensitive and confidential data in many critical situations that rely heavily on exchanging confidential data. At the best of our knowledge, this research starts the study of unconditional-quantum-resistant-location-driven cryptography by using the Lattice problem for the IoT in a pre-and post-quantum world. Unlike existing schemes, the proposed cryptosystem is the first secure and unrestricted position-based protocol that guards against any number of collusion attackers and against quantum attacks. It has a guaranteed authentication process, solves the problems of distributing public keys by removing a public key infrastructure (PKI), offers secure NB-IoT without SIM cards, and resists location spoofing attacks. Furthermore, it can be generalized to any network - not just NB-IoT.
引用
收藏
页码:133185 / 133203
页数:19
相关论文
共 96 条
[41]   Location-Aware Communications for 5G Networks [How location information can improve latency, and robustness of 5G] [J].
Di Taranto, Rocco ;
Muppirisetty, Srikar ;
Raulefs, Ronald ;
Slock, Dirk T. M. ;
Svensson, Tommy ;
Wynneersch, Henk .
IEEE SIGNAL PROCESSING MAGAZINE, 2014, 31 (06) :102-112
[42]  
Dichtl M, 2007, P DAGST SEM
[43]  
Dong Q, 2012, 2012 INTERNATIONAL CONFERENCE ON WIRELESS COMMUNICATIONS IN UNUSUAL AND CONFINED AREAS (ICWCUCA)
[44]  
Du H.-J., 2004, 2004256 DRDC TM
[45]  
Dziembowski S, 2014, LECT NOTES COMPUT SC, V8469, P300
[46]   Susceptibility of GPS-Dependent Complex Systems to Spoofing [J].
Faria, Lester de Abreu ;
de Melo Silvestre, Caio Augusto ;
Feitosa Correia, Marcelino Aparecido ;
Roso, Nelson A. .
JOURNAL OF AEROSPACE TECHNOLOGY AND MANAGEMENT, 2018, 10
[47]   Discovery and Verification of Neighbor Positions in Mobile Ad Hoc Networks [J].
Fiore, Marco ;
Casetti, Claudio Ettore ;
Chiasserini, Carla-Fabiana ;
Papadimitratos, Panagiotis .
IEEE TRANSACTIONS ON MOBILE COMPUTING, 2013, 12 (02) :289-303
[48]   Securing Warning Message Dissemination in VANETs Using Cooperative Neighbor Position Verification [J].
Fogue, Manuel ;
Martinez, Francisco J. ;
Garrido, Piedad ;
Fiore, Marco ;
Chiasserini, Carla-Fabiana ;
Casetti, Claudio ;
Cano, Juan-Carlos ;
Calafate, Carlos T. ;
Manzoni, Pietro .
IEEE TRANSACTIONS ON VEHICULAR TECHNOLOGY, 2015, 64 (06) :2538-2550
[49]  
Gao F., 2016, SCI CHINA PHYS MECH, V59, P1
[50]  
Global Mobile Suppliers Association, LTE SUBSCR 2Q 2017