通信学报2025,Vol.46Issue(11):127-146,20.DOI:10.11959/j.issn.1000-436x.2025212
FEN-AKA:面向动态噪声环境的无人机轻量级三方认证协议
FEN-AKA:a lightweight three-party authentication protocol for UAV in dynamic noise environments
摘要
Abstract
To address unreliable UAV communications in high-noise,strong-interference environments,a lightweight three-party authentication protocol was proposed using noisy physical unclonable function(PUF)and fuzzy extractors.Hardware-intrinsic noise was captured by noisy PUF to mitigate environmental drift,and stable keys were generated via fuzzy extractors to overcome output instability.Critical datas were protected by a hardware security module(HSM),and CRP leakage risk was eliminated through an event-driven update mechanism.The protocol was formally verified with Mao-Boyd logic and the random oracle model,demonstrating anonymity,untraceability,and resistance to physical cap-ture.It reduced computational overhead by 21.2%and storage cost by 14.4%,while significantly improving communica-tion efficiency over existing schemes.It is well suited for resource-constrained UAVs in harsh,dynamic environments and effectively enhances system reliability.关键词
噪声物理不可克隆函数/模糊提取器/硬件安全模块/噪声干扰/三方认证协议Key words
noisy physical unclonable function/fuzzy extractor/hardware security module/noise interference/three-party authentication protocol分类
信息技术与安全科学引用本文复制引用
宋建华,刘世炜,张龑..FEN-AKA:面向动态噪声环境的无人机轻量级三方认证协议[J].通信学报,2025,46(11):127-146,20.基金项目
国家自然科学基金资助项目(No.62377009) (No.62377009)
湖北省重大攻关基金资助项目(JD)(No.2023BAA018) (JD)
绩效评价信息管理研究湖北省人文社科基地课题基金资助项目(No.2025JX03) (No.2025JX03)
湖北省科技计划重大科技专项基金资助项目(No.2024BAA008)The National Natural Science Foundation of China(No.62377009),The Major Project of Hubei Province(JD)(No.2023BAA018),The Research Center for Performance Evaluation and Information Management,Hubei Provincial Humanities and Social Sciences Research Base Project(No.2025JX03),The Major Science and Technology Special Project of Hubei Science and Technology Plan(No.2024BAA008) (No.2024BAA008)