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Lightweight Authentication Protocol Based on Physical Unclonable Function

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摘要 In the emerging Industrial Internet of Things(IIoT),authentication problems have become an urgent issue for massive resource-constrained devices because traditional costly security mechanisms are not suitable for them.The security protocol designed for resource-constrained systems should not only be secure but also efficient in terms of usage of energy,storage,and processing.Although recently many lightweight schemes have been proposed,to the best of our knowledge,they are unable to address the problem of privacy preservation with the resistance of Denial of Service(DoS)attacks in a practical way.In this paper,we propose a lightweight authentication protocol based on the Physically Unclonable Function(PUF)to overcome the limitations of existing schemes.The protocol provides an ingenious authentication and synchronization mechanism to solve the contradictions amount forward secrecy,DoS attacks,and resource-constrained.The performance analysis and comparison show that the proposed scheme can better improve the authentication security and efficiency for resource-constrained systems in IIoT.
出处 《Computers, Materials & Continua》 SCIE EI 2022年第9期5031-5040,共10页 计算机、材料和连续体(英文)
基金 This work was supported by China Postdoctoral Science Foundation under Grant Nos.2020M681959 and 2020TQ0291 in part by the national key R&D project under Grant No.2018YFB2100401 in part by the National Key Research and Development Project No.2018YFB2100400.
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