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GNSS time offset monitoring based on the single difference among systems

机译:基于系统间单一差异的GNSS时间偏移监视

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摘要

Time offset monitoring of multiple Global Navigation Satellite Systems is important for compatibility and interoperability. Unlike conventional signal space approaches, such as single-point positioning (SPP) and precise point positioning, an approach based on the principle of single difference among systems, single-difference point positioning (SDPP), is proposed to omit the receiver clock parameter and reduce the influence of the common model errors during estimation. The proposed approach was validated on different datasets, and results shown that the estimated time offset among systems using SDPP has no significant difference with that using SPP. Moreover, SDPP retrieves the best time offset estimation when considering it as a random walk process, as it provides smooth estimation with low noise. Furthermore, considering constraints from station coordinates and tropospheric delay further improves time offset estimation. The time offset estimation over time remains within a reasonable range, exhibits some periodicity, and estimation from different stations is consistent if disregarding system biases. In addition, the estimated time offset can be used to improve the SPP accuracy.
机译:多个全球导航卫星系统的时间偏移量监视对于兼容性和互操作性很重要。与传统的信号空间方法(例如单点定位(SPP)和精确点定位)不同,提出了一种基于系统间单差原理,单差点定位(SDPP)的方法来省略接收器时钟参数和减少估算过程中常见模型误差的影响。该方法在不同的数据集上得到了验证,结果表明,使用SDPP的系统之间的估计时间偏移与使用SPP的系统之间没有显着差异。此外,SDPP在将其视为随机游走过程时会检索最佳时间偏移估计,因为它提供了低噪声的平滑估计。此外,考虑到来自台站坐标和对流层延迟的限制,进一步改善了时间偏移估计。随时间变化的时间偏移估计保持在合理范围内,表现出一定的周期性,并且如果不考虑系统偏差,则来自不同站点的估计是一致的。另外,估计的时间偏移可用于提高SPP精度。

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