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A novel identifier scheme for the ISEA Aperture 3 Hexagon Discrete Global Grid System

机译:ISEA Aperture 3六角形离散全球网格系统的新颖标识符方案

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摘要

Geospatial data is often spatially aggregated by the use of Discrete Global Grid Systems. References to grid cells are needed for the communication of such data, and different identifier schemes have accordingly been introduced in literature. These schemes suffer, however, from being hard to understand for non-experts, and the geometry of a cell cannot be inferred from its identifier without complex computations. In this article, a novel identifier scheme that encodes the geographic coordinates of the centroid of a cell is proposed, which comes at the cost of potentially being ambiguous in case of a very fine-grained grid. We reason and computationally demonstrate that ambiguity does though not occur for real-world applications. The novel identifier scheme minimizes the amount of data to be communicated, for example, between a server and a client application, and it allows to infer approximate geometries of the cells only by their identifiers.
机译:地理空间数据通常通过使用离散全球网格系统进行空间汇总。通信此类数据需要引用网格单元,并且相应地在文献中引入了不同的标识符方案。但是,这些方案难以为非专家所理解,并且如果没有复杂的计算,就无法从其标识符推断出单元的几何形状。在本文中,提出了一种新颖的标识符方案,该方案可对单元质心的地理坐标进行编码,但这样做的代价是在网格非常细的情况下可能模棱两可。我们进行推理并通过计算证明,对于真实世界的应用程序不会出现歧义。新颖的标识符方案最小化了例如在服务器和客户端应用程序之间要通信的数据量,并且它允许仅通过其标识符来推断小区的近似几何形状。

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