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A secure authentication scheme for Internet of Things
Affiliation:1. Department of Computer Science and Engineering, Hong Kong University of Science and Technology, Hong Kong;2. Harbin Institute of Technology Shenzhen Graduate School, Shenzhen, China;3. Fujian Provincial Key Laboratory of Big Data Mining and Applications, Fujian University of Technology, Fujian, China;4. National Demonstration Center for Experimental Electronic Information and Electrical Technology Education, Fujian University of Technology, Fujian, China;1. Department of Electrical Engineering, Tunghai University, No. 1727, Sec. 4, Taiwan Boulevard, Xitun Dist., Taichung 40704, Taiwan;2. Department of Computer Science, Tunghai University, No. 1727, Sec. 4, Taiwan Boulevard, Xitun Dist., Taichung 40704, Taiwan
Abstract:Security is one of the major issues in Internet of Things (IoT) research. The rapid growth in the number of IoT devices, the heterogeneity and complexity of these objects and their networks have made authentication a challenging task. Other constraints such as limited computational ability and power, and small storage of some embedded devices make implementation of complex cryptographic algorithms difficult. So far there has been no established industrial standard to address this problem.Recently, Kalra and Sood, and subsequently Chang et al. attempted to solve the authentication problem by proposing key agreement schemes for IoT devices. However, the security of their schemes were unproven. In this paper we demonstrate that these schemes are insecure. We extend upon their work to present a scheme that enables embedded devices to communicate securely with a server on an IoT network. We prove the security of this scheme using formal methods and demonstrate this under the intractability of some well-defined hard problems. We also discuss some practical aspects related to the implementation of the scheme.
Keywords:IoT security  Authentication  Elliptic curve cryptography  Cryptanalysis
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