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A recursive clock anomalies detector with double exponential smoothing

机译:具有双指数平滑的递归时钟异常检测器

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Space qualified atomic clocks are fundamental in Global Navigation Satellite Systems, but they can suffer from different types of anomalies, like phase and frequency jumps, frequency drift changes and variance changes. Different solutions have been proposed for an automated on-board detection of clock anomalies, among which a frequency jump detector based on a recursive exponential filter, with soft requirements in terms of memory and computational power and hence particularly useful for on-board applications. Here, we propose a generalization of this recursive detector, based on double exponential smoothing: it properly takes into account the frequency drift and also detects drift and variance changes. Then, we test a first version of our detector on simulated and real data, and we discuss the results.
机译:符合太空要求的原子钟是全球导航卫星系统的基础,但它们可能会遭受不同类型的异常之苦,例如相位和频率跃变,频率漂移变化和方差变化。已经提出了用于时钟的自动车载检测的不同解决方案,其中基于递归指数滤波器的跳频检测器在存储和计算能力方面有较软的要求,因此对于车载应用特别有用。在这里,我们提出基于双指数平滑的递归检测器的一般化:它适当地考虑了频率漂移,并且还检测了漂移和方差变化。然后,我们在模拟和真实数据上测试检测器的第一个版本,并讨论结果。

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