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首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Assessment of EGM2008 in Europe using accurate astrogeodetic vertical deflections and omission error estimates from SRTM/DTM2006.0 residual terrain model data
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Assessment of EGM2008 in Europe using accurate astrogeodetic vertical deflections and omission error estimates from SRTM/DTM2006.0 residual terrain model data

机译:使用SRTM / DTM2006.0残余地形模型数据中的精确大地测量垂直偏转和遗漏误差估计值对欧洲EGM2008进行评估

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[1] We assess the new EGM2008 Earth gravitational model using a set of 1056 astrogeodetic vertical deflections over parts of continental Europe. Our astrogeodetic vertical deflection data set originates from zenith camera observations performed during 1983-2008. This set, which is completely independent from EGM2008, covers, e.g., Switzerland, Germany, Portugal and Greece, and samples a variety of topography – level terrain, medium elevated and rugged Alpine areas. We describe how EGM2008 is used to compute vertical deflections according to Helmert's (surface) definition. Particular attention is paid to estimating the EGM2008 signal omission error from residual terrain model (RTM) data. The RTM data is obtained from the Shuttle Radar Topography Mission (SRTM) elevation model and the DTM2006.0 high degree spherical harmonic reference surface. The comparisons between the astrogeodetic and EGM2008 vertical deflections show an agreement of about 3 arc seconds (root mean square, RMS). Adding omission error estimates from RTM to EGM2008 significantly reduces the discrepancies from the complete European set of astrogeodetic deflections to 1 arc second (RMS). Depending on the region, the RMS errors vary between 0.4 and 1.5 arc seconds. These values not only reflect EGM2008 commission errors, but also short-scale mass-density anomalies not modelled from the RTM data. Given (1) formally stated EGM2008 commission error estimates of about 0.6-0.8 arc seconds for vertical deflections, and (2) that short-scale mass-density anomalies may affect vertical deflections by about 1 arc second, the agreement between EGM2008 and our astrogeodetic deflection data set is very good. Further focus is placed on the investigation of the high-degree spectral bands of EGM2008. As a general conclusion, EGM2008 – enhanced by RTM data – is capable of predicting Helmert vertical deflections at the 1 arc second accuracy level over Europe.
机译:[1]我们使用欧洲大陆部分地区的一组1056个大地电磁垂直偏转来评估新的EGM2008地球重力模型。我们的大地测量垂直偏转数据集来自1983-2008年间进行的天顶摄像机观测。这套系统与EGM2008完全独立,涵盖例如瑞士,德国,葡萄牙和希腊,并采样了各种地形-水平地形,中高海拔和崎Al的高山地区。我们将根据Helmert的(表面)定义描述EGM2008如何用于计算垂直挠度。要特别注意从残余地形模型(RTM)数据估计EGM2008信号遗漏误差。 RTM数据是从航天飞机雷达地形任务(SRTM)高程模型和DTM2006.0高次球谐参考面获得的。天文大地和EGM2008垂直挠度之间的比较显示出约3弧秒(均方根,RMS)的一致性。将RTM中的遗漏误差估算值添加到EGM2008中,可以将整个欧洲的大地磁偏转量的差异减少到1弧秒(RMS)。视区域而定,RMS误差在0.4至1.5弧秒之间变化。这些值不仅反映EGM2008佣金错误,还反映出未根据RTM数据建模的小规模质量密度异常。鉴于(1)正式陈述的EGM2008垂直偏转的佣金误差估计约为0.6-0.8弧秒,并且(2)短尺度质量密度异常可能影响垂直偏转约1弧秒,这是EGM2008与我们的大地测量学之间的协议挠度数据集非常好。 EGM2008的高光谱波段的研究进一步集中。总的来说,通过RTM数据增强的EGM2008能够在欧洲范围内以1弧秒的精度预测Helmert的垂直偏转。

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