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Optimal Synchronization of Local Clocks by GPS 1PPS Signals Using Predictive FIR Filters

机译:使用预测FIR滤波器通过GPS 1PPS信号实现本地时钟的最佳同步

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In this paper, we discuss optimal synchronization of local clocks using Global Positioning System (GPS) one-pulse-per-second (1PPS) timing signals. To eliminate sawtooth errors that are peculiar to the 1PPS signals and optimally steer the clock errors each $M$ seconds, we propose the use of a ramp-predictive finite-impulse-response (FIR) filter that is known to be optimal for clock models on large averaging horizons. A low-pass filter is used to smooth the hold filter output between the optimally predicted points. A GPS-locked crystal clock has been investigated in detail in terms of the time interval error, Allan deviation, and precision time protocol (PTP) variance. A high-efficiency implementation of the proposed synchronization algorithm is experimentally demonstrated.
机译:在本文中,我们讨论了使用全球定位系统(GPS)每秒一脉冲(1PPS)定时信号的本地时钟的最佳同步。为了消除1PPS信号特有的锯齿误差并以每$ M $秒为单位最佳地控制时钟误差,我们建议使用已知为时钟模型最佳的斜坡预测有限冲激响应(FIR)滤波器在较大的平均水平上。低通滤波器用于平滑最佳预测点之间的保持滤波器输出。 GPS锁定晶体时钟已根据时间间隔误差,艾伦偏差和精确时间协议(PTP)差异进行了详细研究。实验证明了所提出的同步算法的高效实现。

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