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An assessment of Bernese GPS software precise point positioning using IGS final products for global site velocities

机译:使用IGS最终产品评估伯恩斯GPS软件的精确点定位以实现全球站点速度

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We assess the use of precise point positioning (PPP) within the Bernese GPS software (BSW) Version 5.0 over the period from 2000 to 2005. In our strategy, we compute a set of daily PPP solutions for international GNSS service (IGS) reference frame (IGb00) sites by fixing IGS final satellite orbits and clock products, followed by a Helmert transformation of these solutions into ITRF2000, forming a set of continuous position time series over the entire time span. We assess BSW PPP by comparing our set of transformation parameters with those produced by the IGS analysis centre coordinator (ACC) and our position time series with those of the Jet Propulsion Laboratory (JPL) and the Scripps Orbit and Permanent Array Centre at the Scripps Institute of Oceanography (SIO). The distributions of the north (N), east (E) and up (U) daily position differences are characterized by means and SD of +2.2 ± 4.8, ?0.6 ± 7.9 and +4.8 ± 17.3 mm with respect to JPL, and of +0.1 ± 4.4, ?0.1 ± 7.4 and ?0.1 ± 11.8 mm with respect to SIO. Similarly, we find sub-millimetre mean velocity differences and SD for the N, E and U components of 0.9, 1.5 and 2.2 mm/year with JPL, and of 1.2, 1.6 and 2.3 mm/year with SIO. A noise analysis using maximum likelihood estimation (MLE) shows that when estimating global site velocities from our position time series, the series need to be on average up to 1.3 times longer than those of JPL and SIO, before an uncertainty of less than 0.5 mm/year is obtained.
机译:我们评估了2000年至2005年期间在Bernese GPS软件(BSW)5.0版中使用精确点定位(PPP)的情况。在我们的策略中,我们为国际GNSS服务(IGS)参考框架计算了一套日常PPP解决方案(IGb00)站点,方法是固定IGS最终卫星轨道和时钟产品,然后将这些解决方案进行Helmert转换为ITRF2000,从而在整个时间范围内形成一组连续的位置时间序列。我们通过将转换参数集与IGS分析中心协调员(ACC)产生的转换参数集,位置时间序列与喷气推进实验室(JPL)以及斯克里普斯研究所斯克里普斯轨道和永久阵列中心的位置参数进行比较,来评估BSW PPP海洋学(SIO)。北部(N),东部(E)和向上(U)每日位置差异的分布的特征是,相对于JPL,均值和SD为+2.2±4.8,?0.6±7.9和+4.8±17.3 mm。相对于SIO的+0.1±4.4,?0.1±7.4和?0.1±11.8 mm。同样,我们发现,使用JPL时,N,E和U分量的N,E和U分量的亚毫米平均速度差和SD使用SPL时分别为0.9、1.5和2.2 mm /年。使用最大似然估计(MLE)进行的噪声分析表明,从我们的位置时间序列估计全球站点速度时,在不确定性小于0.5 mm之前,该序列平均需要比JPL和SIO的平均速度长1.3倍。 /年。

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