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Global positioning system interference and satellite anomalous event monitor.

机译:全球定位系统干扰和卫星异常事件监控器。

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Global Positioning System satellite Signal Quality Monitoring (SQM) is required to ensure the integrity of the received signal for aviation safety-critical systems. Failure mitigation is not addressed since failure detection ensures system integrity. The GPS Anomalous Event Monitor (GAEM) is introduced, consisting of a GPS receiver serving as an anomaly sensor, and the Software Defined Radio, allowing for a thorough analysis of signal malfunction modes through advanced signal processing techniques. Algorithms to monitor the GPS signal by the anomaly sensor are developed and in case of possible signal inconsistencies the signal is analyzed by the Software Defined Radio.; For the purpose of quality monitoring it is essential to understand the impact of the radio frequency front-end on the received signal, and implicitly onto the signal parameter estimation process; otherwise a signal inconsistency may be flagged which is induced by the monitoring system. Thus, radio frequency front-end induced errors are examined and the statistics for signal parameter estimators are derived.; As the statistics of an anomalous signal are unknown, a non-parametric, non-homoscedastic (uncommon variance of sample space) statistical test is developed. Berry-Esseen bounds are introduced to quantify convergence and to establish confidence levels. The algorithm is applied to the detection of signal anomalies, with emphasis on interference detection.; The algorithms to detect GPS signal anomalies are verified with experimental data. The performance of the interference detection algorithms is demonstrated through data collection in a shielded measurement chamber. Actual GPS signals in combination with interference sources such as narrowband, wideband and pulsed interference were broadcast in the chamber. Subsequently, case studies from continuous GPS monitoring are included and observed anomalies are discussed. The performance demonstration of the GPS anomalous event monitor is concluded with a field experiment to investigate the effects of aircraft overflights on GPS signal distortions.
机译:需要全球定位系统卫星信号质量监控(SQM),以确保航空安全关键型系统的接收信号的完整性。由于故障检测可确保系统完整性,因此未解决故障缓解问题。引入了GPS异常事件监视器(GAEM),其中包括用作异常传感器的GPS接收器和软件无线电,从而可以通过高级信号处理技术对信号故障模式进行全面分析。开发了通过异常传感器监视GPS信号的算法,并在可能出现信号不一致的情况下,通过软件无线电对信号进行分析。为了进行质量监视,必须了解射频前端对接收信号的影响,以及对信号参数估计过程的隐式影响;否则,可能会标记出由监视系统引起的信号不一致。因此,检查了射频前端引起的误差,并得出了信号参数估计量的统计量。由于不知道异常信号的统计信息,因此开发了一种非参数,非同态(样本空间的差异很小)统计测试。引入Berry-Esseen边界以量化收敛并建立置信度。该算法应用于信号异常的检测,重点是干扰检测。实验数据验证了检测GPS信号异常的算法。干扰检测算法的性能通过在屏蔽测量室中进行数据收集来证明。实际的GPS信号与诸如窄带,宽带和脉冲干扰之类的干扰源一起在室内广播。随后,包括了来自连续GPS监视的案例研究,并讨论了观察到的异常。 GPS异常事件监控器的性能演示通过现场实验结束,以调查飞机飞越对GPS信号失真的影响。

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