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GNSS Spoofing Detection Technique Using Fraction Parts of Double-difference Carrier Phases

机译:利用双差分载波相位的小数部分的GNSS欺骗检测技术

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摘要

With electronic warfare increasingly complicated and military confrontations increasingly intense, the potential security threat to satellite navigation has become a difficult issue to deal with. Traditional satellite navigation anti-interference technology generally refers to jamming, but less consideration has been given to spoofing. It should be noted that the potential risk induced by spoofing interference is worse than that caused by jamming as the loss of positioning integrity may not be immediately obvious. This paper introduces a spoofing detection method based on a two-antenna structure using fraction parts of double-difference carrier phase observables. If all spoofing signals are transmitted by one single antenna, a spoofing detection hypothesis test can be carried out through the normalisation of double-difference carrier phase observables, without need to consider the integer ambiguity problem, measure the baseline vector and estimate the real directions of signals. The detection scheme adopts an M of N algorithm (if M or more of the test values exceed the threshold, the algorithm declares the presence of a spoofing signal), integrating carrier phase measurements of all the available satellites. Finally, the proposed method is verified by real experiments. This spoofing detection method can easily be applied to GNSS anti-spoofing receivers without changing their architecture and has simple and effective characteristics.
机译:随着电子战的日益复杂和军事对抗的日益激烈,对卫星导航的潜在安全威胁已成为难以解决的问题。传统的卫星导航抗干扰技术通常指的是干扰,但对欺骗的考虑很少。应当指出,由于定位完整性的损失可能不是立即显而易见的,因此欺骗干扰所引起的潜在风险要比干扰所造成的风险更严重。本文介绍了一种基于双天线结构的欺骗检测方法,该方法使用可观察到的双差分载波相位的分数部分。如果所有欺骗信号均由一个天线发送,则可以通过对双频差载波相位观测值进行归一化来进行欺骗检测假设检验,而无需考虑整数歧义问题,测量基线矢量和估计天线的真实方向。信号。该检测方案采用M of N算法(如果M或更多的测试值超过阈值,则该算法声明存在欺骗信号),并整合所有可用卫星的载波相位测量值。最后,通过实际实验验证了该方法的有效性。这种欺骗检测方法可以很容易地应用于GNSS反欺骗接收机,而无需更改其架构,并且具有简单有效的特性。

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