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A generic encoding and operation scheme for mixed aperture three and four hexagonal discrete global grid systems

机译:混合孔径三和四个六边形离散全球网格系统的通用编码和操作方案

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摘要

Discrete Global Grid Systems (DGGSs) are an emerging data model for integration and analysis of big Earth data. Current research on hexagonal DGGSs focuses mainly on the pure aperture, which limits application of resolution and may cause data redundancy. The mixed aperture hexagonal DGGS provides a new and flexible scheme that can optimize data precision by designing the most suitable grid resolution. This paper proposes a generic encoding and operation scheme for the mixed aperture 3 and 4 hexagonal DGGSs. A planar mathematical model with unique location representation was constructed. Based on this model, this paper designed an encoding scheme and gave relevant operational properties and rules. A generic method of extending the planar scheme to the surface of an icosahedron was then designed and spherical grids were obtained by projection. The conversion between geographical coordinates and codes was also provided. The proposed scheme has a more complete theoretical basis than existing schemes and can be applicable to different aperture sequences. Experiments show that the code addition efficiency of the proposed algorithm is superior to existing hexagonal grid systems. A case study with ocean salinity hexagonal data demonstrated the flexibility of the proposed scheme.
机译:离散的全局网格系统(DGGSS)是一个用于集成和分析大地球数据的新兴数据模型。目前关于六角形DGGSS的研究主要集中在纯孔径上,限制了分辨率的应用,并可能导致数据冗余。混合孔径六边形DGGS提供了一种新的和灵活的方案,可以通过设计最合适的网格分辨率来优化数据精度。本文提出了用于混合孔径3和4个六边形DGGSS的通用编码和操作方案。构建了具有独特位置表示的平面数学模型。基于该模型,本文设计了编码方案,并提供了相关的操作属性和规则。然后设计了将平面方案延伸到ICOSaheDron的表面的通用方法,并通过投影获得球形网格。还提供了地理坐标和代码之间的转换。该方案具有比现有方案更完整的理论基础,可适用于不同的孔径序列。实验表明,所提出的算法的码添加效率优于现有的六边形网格系统。伴随海洋盐度六边形数据的案例研究表明了该方案的灵活性。

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