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A New Zenith Tropospheric Delay Grid Product for Real-Time PPP Applications over China

机译:用于中国实时PPP应用的Zenith对流层延迟网格新产品

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摘要

Tropospheric delay is one of the major factors affecting the accuracy of electromagnetic distance measurements. To provide wide-area real-time high precision zenith tropospheric delay (ZTD), the temporal and spatial variations of ZTD with altitude were analyzed on the bases of the latest meteorological reanalysis product (ERA-Interim) provided by the European Center for Medium-Range Weather Forecasts (ECMWF). An inverse scale height model at given locations taking latitude, longitude and day of year as inputs was then developed and used to convert real-time ZTD at GPS stations in Crustal Movement Observation Network of China (CMONOC) from station height to mean sea level (MSL). The real-time ZTD grid product (RtZTD) over China was then generated with a time interval of 5 min. Compared with ZTD estimated in post-processing mode, the bias and error RMS of ZTD at test GPS stations derived from RtZTD are 0.39 and 1.56 cm, which is significantly more accurate than commonly used empirical models. In addition, simulated real-time kinematic Precise Point Positioning (PPP) tests show that using RtZTD could accelerate the BDS-PPP convergence time by up to 32% and 65% in the horizontal and vertical components (set coordinate error thresholds to 0.4 m), respectively. For GPS-PPP, the convergence time using RtZTD can be accelerated by up to 29% in the vertical component (0.2 m).
机译:对流层延迟是影响电磁距离测量精度的主要因素之一。为了提供广域实时高精度天顶对流层延迟(ZTD),根据欧洲中层气象中心提供的最新气象再分析产品(ERA-Interim)分析了ZTD随高度的时空变化。范围天气预报(ECMWF)。然后开发了一个以纬度,经度和年份为输入的给定位置的反比例高度模型,并将其用于将中国地壳运动观测网(CMONOC)的GPS站的实时ZTD从站高转换为平均海平面( MSL)。然后以5分钟的时间间隔生成了中国各地的实时ZTD网格产品(RtZTD)。与在后处理模式下估计的ZTD相比,从RtZTD导出的测试GPS站ZTD的偏差和误差RMS为0.39和1.56 cm,这比常用的经验模型要精确得多。此外,模拟的实时运动学精确点定位(PPP)测试表明,使用RtZTD可以在水平和垂直方向上将BDS-PPP的收敛时间分别加快32%和65%(将坐标误差阈值设置为0.4 m) , 分别。对于GPS-PPP,在垂直分量(0.2 m)中,使用RtZTD的收敛时间最多可以加快29%。

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