Assessment of ArcGIS based extraction of geoidal undulation compared to National Geospatial Intelligence Agency (NGA) model – A case study

Author:

Muhammad Sher12,Tian Lide134

Affiliation:

1. Institute of International Rivers and Eco-security, Yunnan University, 650500Kunming, China

2. International Centre for Integrated Mountain Development (ICIMOD), Kathmandu, Nepal

3. CAS Center of Excellence in Tibetan Plateau Earth Sciences, 100101Beijing, China

4. Yunnan Key Laboratory of International Rivers and Transboundary Eco–security, 650091Kunming, China

Abstract

AbstractGlobal Navigation Satellite System (GNSS) and remote sensing Digital Elevation Models (DEMs) represent earth’s surface elevation with reference to ellipsoid and orthometric heights. Proper estimation of the geoid (difference of ellipsoid and orthometric heights) is necessary before comparing data referenced to the different vertical datum. In this paper, an error in estimating EGM96 orthometric height is highlighted, verified by NGA/NASA developed model and MATLAB®. A significant error was found in the ArcGIS derived EGM96 orthometric heights range between ±6.9 meters. In addition, interpolation of low-resolution geoid data also produces significant biases depending on geographic location and the number of the interpolation data point. The bias was maximum negative in the central part of Tibetan Plateau and Himalaya. Therefore, estimation of orthometric height similar to NGA/NASA model precision is necessary for comparison of DEMs for natural resources management, 3D modelling and glaciers mass balance mainly in the mountainous regions.

Publisher

Walter de Gruyter GmbH

Subject

Earth and Planetary Sciences (miscellaneous),Engineering (miscellaneous),Modeling and Simulation

Reference24 articles.

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2. Transforming ellipsoidal heights and geoid undulations between different geodetic reference frames;JOURNAL of Geod,2008

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