首页> 外文会议>2016 6th International Annual Engineering Seminar >Evaluation of the influence of the Global Geopotential Model resolution on the accuracy of local geoid models: (Case study: DI Yogyakarta Province)
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Evaluation of the influence of the Global Geopotential Model resolution on the accuracy of local geoid models: (Case study: DI Yogyakarta Province)

机译:评估全球大地势模型分辨率对局部大地水准面模型准确性的影响:(案例研究:日惹DI)

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摘要

Local gravimetric geoid determination requires data comprising three components namely long-wavelength, medium-wavelength, and short-wavelength components. The long-wavelength component is derived from the Global Geopotential Model (GGM). The medium-wavelength is obtained from terrestrial gravity data, and the short-wavelength component is derived from Digital Terrain Model (DTM) data. Among these three components, the GGM data contributes the most significant value and error. This study has evaluated the influence of the GGM resolution on local geoid model for the area with a good and dense terrestrial gravity data distribution, case study in Yogyakarta Special Region (DIY). This evaluation was carried out to determine the optimal degree value of the GGM for local geoid modelling. The gravimetric geoid computation was done using 2D FFT (Fast Fourier Transform). The utilized variation of the degree values were 360, 540, 720, 1080, 1440, 1800, 2160 and 2190 of the EGM2008 data. The evaluation of the variation of the GGM degree values contribution to the local geoid modelling was done using the geometric geoid derived from collocated GPS-levelling data. The results showed that using the lowest degree value (360 degree) produces the optimal (best) local geoid accuracy for the case study of DIY province.
机译:局部重力大地水准面确定需要包含三个分量的数据,即长波,中波和短波。长波长分量是从全球地理潜力模型(GGM)得出的。从地面重力数据获得中等波长,从数字地形模型(DTM)数据获得短波长分量。在这三个组成部分中,GGM数据贡献最大的价值和误差。这项研究评估了GGM分辨率对地面重力数据分布良好且密集的地区的本地大地水准面模型的影响,以日惹特区(​​DIY)为例。进行该评估以确定用于局部大地水准面建模的GGM的最佳度值。使用2D FFT(快速傅立叶变换)进行重力水准面计算。度值的利用变化是EGM2008数据的360、540、720、1080、1440、1800、2160和2190。使用从并置GPS水准数据得出的几何大地水准面评估了GGM度值对当地大地水准面模型的贡献的变化。结果表明,对于DIY省的案例研究,使用最低的度值(360度)可产生最佳的(最佳的)本地大地水准面精度。

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