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A practical clock synchronization algorithm for UWB positioning systems

机译:一种用于UWB定位系统的实用时钟同步算法

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A clock synchronization scheme is crucial for obtaining accuracy in time-based positioning systems. Existing clock synchronization schemes are mostly based on a simplified linear clock model, which unfortunately have a poor long-term synchronization accuracy. Assuming a two-way time transfer protocol, we propose a novel clock synchronization algorithm based on a precise physical clock model to realize joint clock synchronization and propagation delay estimation. The Cramer-Rao lower bound (CRLB) is derived for this clock model and shows that the estimation is asymptotically efficient and converges to the lower bound. For long time spans, this model performs better than a linear clock model.
机译:时钟同步方案对于获得基于时间的定位系统的精度至关重要。现有的时钟同步方案主要基于简化的线性时钟模型,不幸的是具有差的长期同步精度。假设双向时间传输协议,我们提出了一种基于精确物理时钟模型的新型时钟同步算法,实现联合时钟同步和传播延迟估计。为该时钟模型导出Cramer-Rao下界(CRLB),并表明估计是渐近有效的并且会聚到下限。对于长时间的跨度,该模型比线性时钟模型更好地执行。

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