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Protecting GNSS-based Services using Time Offset Validation

机译:使用时间偏移量验证保护基于GNSS的服务

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Global navigation satellite systems (GNSS) provide pervasive accurate positioning and timing services for a large gamut of applications, from Time based One-Time Passwords (TOPT), to power grid and cellular systems. However, there can be security concerns for the applications due to the vulnerability of GNSS. It is important to observe that GNSS receivers are components of platforms, in principle having rich connectivity to different network infrastructures. Of particular interest is the access to a variety of timing sources, as those can be used to validate GNSS-provided location and time. Therefore, we consider off-the-shelf platforms and how to detect if the GNSS receiver is attacked or not, by cross-checking the GNSS time and time from other available sources. First, we survey different technologies to analyze their availability, accuracy and trustworthiness for time synchronization. Then, we propose a validation approach for absolute and relative time. Moreover, we design a framework and experimental setup for the evaluation of the results. Attacks can be detected based on WiFi supplied time when the adversary shifts the GNSS provided time, more than 23.942 μs; with Network Time Protocol (NTP) supplied time when the adversary-induced shift is more than 2.046 ms. Consequently, the proposal significantly limits the capability of an adversary to manipulate the victim GNSS receiver.
机译:全球导航卫星系统(GNSS)为从基于时间的一次性密码(TOPT)到电网和蜂窝系统的各种应用提供广泛的准确定位和定时服务。但是,由于GNSS的脆弱性,应用程序可能存在安全隐患。重要的是要注意,GNSS接收器是平台的组成部分,原则上具有与不同网络基础结构的丰富连接。特别令人感兴趣的是对各种定时源的访问,因为这些定时源可用于验证GNSS提供的位置和时间。因此,我们通过交叉检查GNSS时间和其他可用来源的时间来考虑现成的平台以及如何检测GNSS接收器是否受到攻击。首先,我们调查不同的技术,以分析它们的可用性,准确性和可信度,以进行时间同步。然后,我们针对绝对时间和相对时间提出了一种验证方法。此外,我们设计了一个框架和实验设置来评估结果。当对手将GNSS提供的时间偏移超过23.942μs时,可以根据WiFi提供的时间检测攻击。与网络时间协议(NTP)提供的时间,当对手引起的移动时间大于2.046 ms时。因此,该提议极大地限制了对手操纵受害者GNSS接收器的能力。

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