Privacy-Preserving and Traceable Certificateless Anonymous Mutual Authentication Scheme for IoT

相互认证 计算机科学 计算机安全 方案(数学) 认证(法律) 匿名 物联网 密码学 计算机网络 信息隐私 互联网隐私 数学 数学分析
作者
Bei Gong,Yong Wu,Akhtar Badshah,Muhammad Waqas
出处
期刊:IEEE Transactions on Dependable and Secure Computing [Institute of Electrical and Electronics Engineers]
卷期号:22 (6): 7508-7520
标识
DOI:10.1109/tdsc.2025.3597949
摘要

By utilizing the sensing and perception capabilities of various devices, the Internet of Things (IoT) enables more precise awareness of the real world, thereby enhancing management and resource utilization efficiency. However, due to their open deployment environments and frequent message exchanges, IoT endpoints are highly vulnerable to a wide range of security threats and privacy breaches, including forgery, data theft, and information leakage. Therefore, to address these challenges and ensure device legitimacy verification and secure data exchange among IoT devices, we propose a privacy-preserving and traceable certificateless anonymous mutual authentication scheme (PPT-CLAMA). PPT-CLAMA not only eliminates the need for a secure channel during key generation but also prevents attackers from tracing the real identity of devices through their own identity or public keys while providing pseudonym and anonymous authentication to devices, demonstrating greater practicality. Furthermore, through security proofs and analysis, PPT-CLAMA satisfies various high-level security properties, including mutual authentication, key agreement, nonrepudiation, unlinkability, perfect forward secrecy, known session-specific temporary information security, traceability, anonymity, and privacy preservation. The simulation results indicate that, compared to authentication and key agreement schemes, PPT-CLAMA reduces the average computational overhead and average communication overhead during the authentication process by 6.73% and 3.31%, respectively, demonstrating higher computational and communication efficiency.
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