The Frame Response Time Interval Based Device Fingerprinting Identification

Jing Guo, Yajuan Guo, Haitao Jiang, Fan Wu, Ziying Wang, Zhimin Gu
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Abstract

Channel state information (CSI)-based wireless device fingerprinting provides an effective authentication scheme at the physical layer of wireless communication devices using CSI short-time invariance, but appears to be inadequate for long-time communication authentication or scenarios that require intermittent authentication. To address this problem, we propose to construct a wireless device fingerprint using frame response time interval (FRTI) and combine a CSI-based wireless dynamic device fingerprint to form a multi-domain fusion wireless device identification and authentication method, which can effectively identify and authenticate wireless devices at the time of wireless device access and during continuous wireless device communication to ensure safe and reliable operation of wireless devices. The experimental results under different scenarios show that using the multi-domain fusion method of frame response interval and channel state information for wireless device identification can significantly improve the accuracy of calculation and transmission delay, and the identification rate reaches more than 95%.
基于帧响应时间间隔的设备指纹识别
基于信道状态信息(CSI)的无线设备指纹技术利用CSI短时不变性在无线通信设备的物理层提供了一种有效的身份验证方案,但对于长时间通信身份验证或需要间歇性身份验证的场景似乎不太合适。针对这一问题,我们提出利用帧响应时间间隔(FRTI)构建无线设备指纹,结合基于csi的无线动态设备指纹,形成多域融合无线设备识别与认证方法,能够在无线设备接入时和无线设备连续通信时有效识别和认证无线设备,确保无线设备安全可靠运行。不同场景下的实验结果表明,采用帧响应间隔和信道状态信息的多域融合方法进行无线设备识别,可以显著提高计算精度和传输时延,识别率达到95%以上。
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