首页> 外文会议>Fourth Symposium on the Environmental Monitoring and Assessment Program (EMAP), Apr 6-8, 1999, San Franciso, CA >GLOBAL GRIDS FROM RECURSIVE DIAMOND SUBDIVISIONS OF THE SURFACE OF AN OCTAHEDRON OR ICOSAHEDRON
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GLOBAL GRIDS FROM RECURSIVE DIAMOND SUBDIVISIONS OF THE SURFACE OF AN OCTAHEDRON OR ICOSAHEDRON

机译:八面体或正二十面体的递归钻石细分的整体网格

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In recent years a number of methods have been developed for subdividing the surface of the earth to meet the needs of applications in dynamic modeling, survey sampling, and information storage and display. One set of methods uses the surfaces of Platonic solids, or regular polyhedra, as approximations to the surface of the earth. Diamond partitions are similar to recursive subdivisions of the triangular faces of either the octahedron or icosahedron. This method views the surface as either four (octahedron) or ten (icosahedron) tessellated diamonds, where each diamond is composed of two adjacent triangular faces of the figure. The method allows for a recursive partition on each diamond, creating nested sub-diamonds, that is implementable as a quadtree, including the provision for a Peano or Morton type coding system for addressing the hierarchical pattern of diamonds and their neighborhoods, and for linearizing storage. Furthermore, diamond partitions, in an aperture-4 hierarchy, provide direct access through the addressing system to the aperture-4 hierarchy of hexagons developed on the figure. Diamond partitions provide a nested hierarchy of grid cells for applications that require nesting and diamond cells have radial symmetry for those that require this property. Finally, diamond partitions can be cross-referenced with hierarchical triangle partitions used in other methods.
机译:近年来,已经开发了许多方法来细分地球表面,以满足在动态建模,勘测采样以及信息存储和显示中的应用需求。一组方法使用柏拉图固体或规则的多面体表面近似于地球表面。菱形分隔类似于八面体或二十面体的三角形面的递归细分。此方法将表面视为四颗(八面体)或十颗(二十面体)棋盘形钻石,其中每颗钻石均由图中两个相邻的三角形面组成。该方法允许在每个钻石上进行递归分区,创建嵌套的子钻石,该钻石可以实现为四叉树,包括提供Peano或Morton型编码系统,以解决钻石及其邻域的分层模式以及线性化存储。此外,孔径为4的层次结构中的菱形隔断可通过寻址系统直接访问图中形成的六边形的孔径为4的层次结构。菱形分区为需要嵌套的应用程序提供了网格单元的嵌套层次结构,而菱形单元对于需要此属性的应用程序具有径向对称性。最后,菱形分区可以与其他方法中使用的分层三角形分区进行交叉引用。

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