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首页> 外文期刊>Journal of Geodesy >A strategy for determining the regional geoid by combining limited ground data with satellite-based global geopotential and topographical models: a case study of Iran
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A strategy for determining the regional geoid by combining limited ground data with satellite-based global geopotential and topographical models: a case study of Iran

机译:通过将有限的地面数据与基于卫星的全球大地势和地形模型相结合来确定区域大地水准面的策略:伊朗的案例研究

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摘要

The computation of regional gravimetric geoid models with reasonable accuracy, in developing countries, with sparse data is a difficult task that needs great care. Here we investigate the procedure for gathering, evaluating and combining different data for the determination of a gravimetric geoid model for Iran, where limited ground gravity data are available. Heterogeneous data, including gravity anomalies, the high-resolution Shuttle Radar Topography Mission global digital terrain model and different global geopotential models including recently published Gravity Recovery and Climate Experiment models, are combined through least-squares modification of the Stokes formula. The new gravimetric geoid model, IRG04, agrees considerably better with GPS/levelling than any of the other recent local geoid model in the area. Its RMS fit with GPS/levelling is 0.27 m and 3.8 ppm in the absolute and relative view, respectively. The relative accuracy of IRG04 is four times better than the most recently published global and regional geoid models available in this area. This progress shows the practical potential of the method of least-squares modification of Stokes's formula in combination with heterogeneous data for regional geoid determination.
机译:在发展中国家,使用稀疏数据以合理的精度计算区域重力大地水准面模型是一项艰巨的任务,需要格外小心。在这里,我们调查了收集,评估和组合不同数据的程序,以确定伊朗的重力大地水准面模型,那里只有有限的地面重力数据。通过对Stokes公式进行最小二乘修改,可以将包括重力异常,高分辨率Shuttle Radar Radography Mission全球数字地形模型以及不同的全球地势模型(包括最近发布的重力恢复和气候实验模型)在内的异构数据结合在一起。新的重力大地水准面模型IRG04与GPS /水准仪相比,该地区其他任何最近的本地大地水准面模型都具有更好的一致性。在绝对视图和相对视图中,其与GPS /水平仪的RMS拟合分别为0.27 m和3.8 ppm。 IRG04的相对精度是该地区最新发布的全球和区域大地水准面模型的四倍。这一进展表明,斯托克斯公式的最小二乘修改方法与用于区域大地水准面确定的异构数据相结合的实际潜力。

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