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VGRID: a generic, dynamic HDF5 storage model for georeferenced grid data

机译:VGRID:用于地理参考网格数据的通用动态HDF5存储模型

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Describes the Variable resolution GRID (VGRID) storage model designed to support the storage and retrieval of bathymetric data collected through the Precision Underwater Mapping (PUMA) System using the Tactical Environmental Data Server (TEDS) and the Naval Oceanographic Office's (NAVOCEANO) Digital Bathymetric Data Base-Variable (DBDB-V) Resolution product. Sponsored by the Space and Naval Warfare Systems Command (SPAWAR, PMW-155), PUMA-TEDS represents a significant advancement in the collection and assimilation of environmental data at global, regional or local levels. Although VGRID has been developed for PUMA bathymetry, its generic implementation makes it suitable for use with any type of environmental data grid through the definition of a product specification. Built on NCSA's Hierarchical Data Format version 5 (HDF5), the VGRID model inherits the HDF5 file format and library implementation that is optimized for large-scale scientific data storage. The VGRID model provides a hierarchy of environmental storage objects: files, constituents, and grids. A VGRID file can contain VGRID constituents enabling multiparameter data storage. VGRID constituents can contain VGRID grids that are identified by resolutions and have grid increments specified in arc minutes, metres, or polar stereographic grid units. The grid interface supports the storage of geographic, polar stereographic, Universal Transverse Mercator (UTM), and Universal Polar Stereographic (UPS) projected grids. Behind the scenes of the VGRID API, a tile scheme is applied to data written to the VGRID file. When VGRID grids are created, compression options can be set for all tiles created in the resolution. The VGRID tile scheme provides the framework for a robust tile caching mechanism, which minimizes the time required to read data from a VGRID file. The VGRID API uses a "bounce" algorithm to search each resolution and extract the highest resolution data for a point query. In addition, three interpolation options are available for point queries: nearest neighbor, bilinear and minimum curvature spline. The minimum curvature spline algorithm provides a "feathering" capability that effectively reduces the artifacts that often occur at the resolution boundaries of multiple resolution datasets.
机译:描述了旨在支持通过使用战术环境数据服务器(TEDS)和海军海洋学办公室(Navoceano)数字浴室数据基础变量(DBDB-V)分辨率产品。由空间和海军战争系统指挥(Spawar,PMW-155)赞助,Puma-Teds表示在全球,区域或地方的环境数据收集和同化的重大进步。虽然VGRID已经为PUMA浴池开发而来,但其通用实施使其适用于通过产品规格的定义来与任何类型的环境数据网格一起使用。基于NCSA的分层数据格式版本5(HDF5),VGRID模型继承了针对大型科学数据存储优化的HDF5文件格式和库实现。 VGRID模型提供了环境存储对象的层次结构:文件,成分和网格。 vGRID文件可以包含vGRID成分,从而实现多游ameter数据存储。 vGRID成分可以包含通过分辨率标识的vGRID网格,并在电弧分钟,仪表或极性立体栅格单元中指定网格增量。电网接口支持存储地理,极性立方体,通用横向符号(UTM)和Universal Polare Tereogogog(UPS)投影网格的存储。在VGRID API的幕后,将图形方案应用于写入vGRID文件的数据。创建VGRID网格时,可以为分辨率创建的所有图块设置压缩选项。 VGRID图块方案为强大的瓦片缓存机制提供了框架,这最小化了从vGRID文件读取数据所需的时间。 VGRID API使用“反弹”算法来搜索每个分辨率并提取点查询的最高分辨率数据。此外,有三个插值选项可用于点查询:最近的邻居,双线性和最小曲率花条。最小曲率花键算法提供了“羽化”能力,其有效地减少了经常发生在多分辨率数据集的分辨率边界处的伪像。

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