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A KALMAN FILTER CLOCK ALGORITHM FOR USE IN THE PRESENCE OF FLICKER FREQUENCY MODULATION NOISE

机译:适用于闪烁频率调制噪声的卡尔曼滤清器时钟算法

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NPL has developed a Kalman-filter-based clock algorithm for combining measurements from its three active hydrogen masers. The algorithm is designed to produce a near optimal composite when the dominant noise process present is flicker frequency modulation (FFM). The FFM is modelled approximately by a linear combination of Markov noise processes. Each Markov process is included in the Kalman filter and contributes an additional component to its state vector. Both the validity of the model and the effectiveness of adding these additional components to the state vector are examined. The performance of the new algorithm is examined when applied to simulated measurements and also to measurements obtained from NPL’s hydrogen masers.
机译:NPL开发了一种基于卡尔曼 - 滤波器的时钟算法,用于将测量结果与其三个活性氢涂料器相结合。 该算法旨在在存在的主要噪声处理是闪烁频率调制(FFM)时产生近最佳复合材料。 FFM大约通过马尔可夫噪声过程的线性组合进行建模。 每个马尔可夫过程都包括在卡尔曼滤波器中,并将附加组件贡献到其状态向量。 检查模型的有效性以及将这些附加组件添加到状态向量的有效性。 当应用于模拟测量时,检查新算法的性能以及从NPL的氢气配合物获得的测量。

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