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GNSS Spoofing Mitigation Using Multiple Receivers

机译:使用多个接收器的GNSS欺骗缓解

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GNSS receivers are vulnerable to spoofing attacks, where false satellite signals are transmitted to trick the receiver to provide false position and/or time estimates. Novel algorithms are proposed for spoofing mitigation by exchanging double differences of pseudorange, or carrier phase, measurements between multiple GNSS receivers. In scenarios where the spoofing system utilizes a single transmit antenna, the pseudorange, and carrier phase, measurements that are associated with the spoofing signal can be detected and removed. Simulated meaconing attacks generated with a Spirent hardware simulator and measurements obtained with a modified version of GNSS-SDR are used to evaluate the proposed algorithms. Spoofing mitigation using pseudorange measurements is possible, for receivers that are separated at least five meters apart. With a receiver separation of 20 meters, the pseudorange double difference algorithm is able to correctly authenticate at least six of seven pseudoranges within 30 seconds. The carrier phase approach enables mitigation of spoofing signals at shorter receiver distances. However, this approach requires a more accurate time synchronization between the receivers.
机译:GNSS接收器容易受到欺骗攻击,在这种情况下,虚假的卫星信号会被发送来欺骗接收器,以提供虚假的位置和/或时间估计。提出了通过在多个GNSS接收器之间交换伪距或载波相位测量值的双差来欺骗缓解的新型算法。在欺骗系统使用单个发射天线,伪距和载波相位的情况下,可以检测并删除与欺骗信号相关的测量。使用Spirent硬件模拟器生成的模拟测量攻击和使用GNSS-SDR修改版获得的测量结果均用于评估所提出的算法。对于间隔至少五米的接收器,可以使用伪距测量来减轻欺骗。接收机间距为20米,伪距双差算法能够在30秒内正确认证七个伪距中的至少六个。载波相位方法可以减轻接收器距离较短时的欺骗信号。但是,这种方法需要接收机之间更精确的时间同步。

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