Research and Construction of a Global Hexagonal Marine Gravity Gradient Reference Map for Navigation

Author:

Yan Huang1ORCID,Shanshan Li1,Chuyuan Zhou2,Xinxing Li1,Minghao Lv3ORCID,Diao Fan1,Xuli Tan1,Aoming Wang1

Affiliation:

1. Institute of Surveying and Mapping, PLA Strategic Support Force Information Engineering University, China

2. Shenzhen University, China

3. 96941 Troops, China

Abstract

A high-precision marine gravity gradient reference map is key to enabling underwater gravity gradient matching navigation. At present, the construction of the reference maps is based on quadrilateral geographic grids. However, quadrilateral grids lead to detriangulation at high latitudes, which limits the global applicability of such maps to underwater gravity navigation. To circumvent the limitations of quadrilateral grids, a hexagonal grid is introduced for constructing the reference map. This paper analyzes the characteristics of the icosahedral Snyder equal area aperture 4 hexagon (ISEA4H) and H3 grid systems and selects an appropriate grid system. In addition, we calculate and analyze the grid model errors and matching positioning errors of hexagonal and quadrilateral grids at the same resolution. The experimental results show that the grid model and matching positioning errors of a hexagonal grid system are more than 14% and 15% less than those of a quadrilateral grid system, respectively, indicating the feasibility and effectiveness of applying hexagonal grids to gravity gradient matching navigation. Given the low construction efficiency of a marine hexagonal grid gravity gradient reference map, we propose an efficient CPU+GPU hybrid parallel scheme. A global total tensor marine hexagonal grid gravity gradient reference map model is then constructed.

Funder

National Natural Science Foundation of China

Publisher

Hindawi Limited

Subject

General Earth and Planetary Sciences

Reference26 articles.

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2. The calculation of vertical gravity gradient anomalies and its application in bathymetry inversion;Y. M. D. Ou;Journal of Geodesy and Geodynamics,2016

3. Research on shallow structure using the surface wave and primary wave of shallow reflection seismic data;B. J. Zhao;Journal of Geodesy and Geodynamics,2019

4. H3: Uber’s hexagonal hierarchical spatial index;I. Brodsky,2018

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