计算机科学
窃听
认证(法律)
物理不可克隆功能
计算机网络
架空(工程)
软件部署
方案(数学)
密码学
简单(哲学)
互联网
安全性分析
计算机安全
报文认证码
嵌入式系统
物理层
物联网
混乱的
分布式计算
身份(音乐)
信息物理系统
功能(生物学)
数据安全
身份验证协议
作者
Sajjad Hussain Chauhdary,Tengfei Ma,Linhua Jiang,Farrukh Aslam Khan,Ashok Kumar Das,Shehzad Ashraf Chaudhry
标识
DOI:10.1109/jiot.2026.3656432
摘要
This article proposes a lightweight two-way authentication scheme, PUF-ILM, that integrates Physical Unclonable Function (PUF) and Improved Logistic Map (ILM). The PUF generates unique challenge-response pairs (CRPs) for each device using its inherent physical randomness, thereby achieving reliable device identity authentication. The ILM encrypts and obfuscates the transmitted CRPs by enhancing their chaotic characteristics, expanding the parameter range, and eliminating periodic windows, effectively resisting modeling and eavesdropping attacks. Security analysis indicates that this scheme possesses several known security attributes, including anti-cloning, anonymity, two-way authentication, forward/backward security, and anti-machine-learning modeling. Performance evaluation shows that PUF-ILM maintains low communication overhead while maintaining a simple system structure and does not rely on complex hardware or external trusted institutions, offering high security and strong practicality, making it especially suitable for large-scale deployment in resource-constrained Internet of Vehicles environments.
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