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A Clock Skew Replication Attack Detection Approach Utilizing the Resolution of System Time

机译:利用系统时间分辨率的时钟偏移复制攻击检测方法

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The clock skew, or the physical ticking rate difference between two digital clocks, has been revealed to have potential on serving as the device fingerprint for identification/authentication purpose. However, it remains as an open issue to detect clock skew replication behavior, which is realized by sending altered timestamps. In this study, it is confirmed that an attacker may fake any target skew with the error being no more than 1ppm in local network environments. Besides, it is also observed that the value of fake timestamps are affected by the time resolution of the attacker's system clock. When the resolution is 1 ms or lower, a relatively large jump between consecutive offsets happens regularly, and the scale of each jump is theoretically the very time resolution of the attacker's system clock. This characteristic is thus adopted to develop a filtering method such that the receiver is able to detect fake timestamps. When the periodical jumps are detected, the filter module abandons these jumps to recover the original clock skew. Experimental results on 15.6 ms and 1 ms time resolutions show that the developed method is effective to detect skew replication attacks, and the errors of the recovered clock skews are no more than 1ppm from the real skews of the attackers.
机译:时钟偏斜或两个数字时钟之间的物理滴答速率差已显示出有潜力用作识别/验证目的的设备指纹。但是,检测时钟偏斜复制行为仍然是一个悬而未决的问题,这可以通过发送更改的时间戳来实现。在本研究中,已确认攻击者可以伪造任何目标偏斜,并且在本地网络环境中的错误不超过1ppm。此外,还可以观察到伪造时间戳的值受攻击者系统时钟的时间分辨率影响。当分辨率为1 ms或更低时,通常会在连续偏移之间发生相对较大的跳跃,并且从理论上讲,每个跳跃的幅度都是攻击者系统时钟的时间分辨率。因此,采用此特性来开发一种滤波方法,以使接收器能够检测到伪造的时间戳。当检测到周期性跳变时,滤波器模块将放弃这些跳变以恢复原始时钟偏斜。在15.6 ms和1 ms时间分辨率上的实验结果表明,所开发的方法可有效检测偏斜复制攻击,并且恢复的时钟偏斜的误差与攻击者的真实偏斜不超过1ppm。

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