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GNSS Spoofing Network Monitoring Based on Differential Pseudorange

机译:基于差分伪距的GNSS欺骗网络监控

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摘要

Spoofing is becoming a serious threat to various Global Navigation Satellite System (GNSS) applications, especially for those that require high reliability and security such as power grid synchronization and applications related to first responders and aviation safety. Most current works on anti-spoofing focus on spoofing detection from the individual receiver side, which identifies spoofing when it is under an attack. This paper proposes a novel spoofing network monitoring (SNM) mechanism aiming to reveal the presence of spoofing within an area. Consisting of several receivers and one central processing component, it keeps detecting spoofing even when the network is not attacked. The mechanism is based on the different time difference of arrival (TDOA) properties between spoofing and authentic signals. Normally, TDOAs of spoofing signals from a common spoofer are identical while those of authentic signals from diverse directions are dispersed. The TDOA is measured as the differential pseudorange to carrier frequency ratio (DPF). In a spoofing case, the DPFs include those of both authentic and spoofing signals, among which the DPFs of authentic are dispersed while those of spoofing are almost overlapped. An algorithm is proposed to search for the DPFs that are within a pre-defined small range, and an alarm will be raised if several DPFs are found within such range. The proposed SNM methodology is validated by simulations and a partial field trial. Results show 99.99% detection and 0.01% false alarm probabilities are achieved. The SNM has the potential to be adopted in various applications such as (1) alerting dedicated users when spoofing is occurring, which could significantly shorten the receiver side spoofing cost; (2) in combination with GNSS performance monitoring systems, such as the Continuous Operating Reference System (CORS) and GNSS Availability, Accuracy, Reliability anD Integrity Assessment for Timing and Navigation (GAARDIAN) System, to provide more reliable monitoring services.
机译:欺骗正成为对各种全球导航卫星系统(GNSS)应用的严重威胁,尤其是对于那些要求高可靠性和安全性的应用,例如电网同步以及与急救人员和航空安全相关的应用。当前大多数针对反欺骗的工作都集中在从单个接收方进行欺骗检测,从而在受到攻击时识别欺骗。本文提出了一种新颖的欺骗网络监视(SNM)机制,旨在揭示一个区域内的欺骗行为。它由多个接收器和一个中央处理组件组成,即使在没有受到网络攻击的情况下,也可以继续检测欺骗。该机制基于欺骗信号与真实信号之间的不同到达时间差(TDOA)属性。通常,来自普通spoofer的欺骗信号的TDOA是相同的,而来自不同方向的真实信号的TDOA是分散的。 TDOA被测量为差分伪距与载波频率之比(DPF)。在欺骗的情况下,DPF包括真实信号和欺骗信号的DPF,其中真实的DPF分散而欺骗的DPF几乎重叠。提出了一种算法来搜索在预定义的小范围内的DPF,如果在该范围内找到多个DPF,则会发出警报。通过仿真和部分现场试验验证了所提出的SNM方法论。结果表明检出率达99.99%,误报率达0.01%。 SNM有可能被各种应用所采用,例如:(1)在发生欺骗时提醒专用用户,这可能会大大缩短接收方的欺骗成本; (2)与GNSS性能监视系统(例如连续运行参考系统(CORS)和GNSS可用性,准确性,定时导航的可靠性和完整性评估(GAARDIAN)系统)相结合,以提供更可靠的监视服务。

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