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Detection of atomic clock frequency jumps with the Kalman filter

机译:用卡尔曼滤波器检测原子钟跳频

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摘要

Frequency jumps are common anomalies in atomic clocks aboard navigation system satellites. These anomalous behaviors must be detected quickly and accurately to minimize the impact on user positioning. We develop a detector for frequency jumps based on the Kalman filter. Numerical simulations show that the detector is fast, with high probability of detection and low probability of false alarms. It also has a low computational cost because it takes advantage of the recursive nature of the Kalman filter. Therefore, it can be used in applications in which little computational power is available, such as aboard navigation system satellites.
机译:跳频是导航系统卫星上原子钟中的常见异常。这些异常行为必须快速,准确地检测出来,以最大程度地减少对用户定位的影响。我们开发了一种基于卡尔曼滤波器的跳频检测器。数值模拟表明,该检测器运行速度快,具有较高的检测概率和较低的误报率。由于它利用了卡尔曼滤波器的递归特性,因此它的计算成本也很低。因此,它可用于导航能力较低的应用中,例如导航系统卫星。

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