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A wavelet-based multiscale ensemble time-scale algorithm

机译:基于小波的多尺度集合时标算法

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摘要

The wide-spread availability of ensembles of high-performance clocks has motivated interest in time-scale algorithms. There are many such algorithms in use today in applications ranging from scientific to commercial. Although these algorithms differ in key aspects and are sometimes tailored for specific applications and mixtures of clocks, they all share the goal of combining measured time differences between clocks to form a reference time scale that is more stable than any of the clocks in the ensemble. A new approach to forming time scales is presented here, the multiscale ensemble timescale (METS) algorithm. This approach is based on a multiresolution analysis afforded by the discrete wavelet transform. The algorithm does not assume a specific parametric model for the clocks involved and hence is well-suited for an ensemble of highly disparate clocks. The approach is based on an appealing optimality criterion which yields a reference time scale that is more stable than the constituent clocks over all averaging intervals (scales). The METS algorithm is presented here in detail and is shown in a simulation study to compare favorably with a time-scale algorithm based on Kalman filtering.
机译:高性能时钟集成的广泛可用性激发了人们对时标算法的兴趣。如今,有许多此类算法在从科学到商业的应用中使用。尽管这些算法在关键方面有所不同,有时有时是针对特定应用和时钟的混合量身定制的,但它们的共同目标是结合时钟之间测得的时间差,以形成比集合中任何时钟都更稳定的参考时标。这里提出了一种形成时间尺度的新方法,即多尺度集合时间尺度(METS)算法。该方法基于离散小波变换提供的多分辨率分析。该算法未针对所涉及的时钟采用特定的参数模型,因此非常适合于高度不同的时钟的集成。该方法基于吸引人的最佳性准则,该准则产生的参考时间尺度在所有平均间隔(尺度)上均比组成时钟稳定。此处详细介绍了METS算法,并在仿真研究中显示了METS算法,以与基于Kalman滤波的时标算法进行比较。

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