A method for automatic model conversion from osm data to professional gis vector data and dynamic integration of osm incremental data
A technology of vector data and incremental data, applied in digital data processing, geographic information database, structured data retrieval, etc., can solve problems such as high labor costs
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[0061] Example 1: Model conversion from OSM data to professional GIS data
[0062] The overall idea of model conversion from OSM data to professional GIS data is attached figure 2 shown. The model conversion from OSM data to professional GIS vector data includes two core tasks, that is, geometry type conversion and core attribute conversion. Geometric type conversion is about converting OSM vector data expressed by node, way, and relation into point, line, and area objects of professional GIS vector data; core attribute conversion is to use a rule-based method to convert points, lines, The feature code of the target model is given to the surface, and the corresponding target layer is determined according to the feature code.
[0063] Geometry type conversion is performed using the following four rules:
[0064] Let OSMGeoPrim represent the primitive OSM geometry type of the object, namely node, way, relation, and OSMtag.k and OSMtag.V represent the value of a pair of key...
Embodiment
[0081] Using Visual Studio C# language, object-oriented method, based on the OGC (Open GIS Consortium) standard, the data layer, business logic layer and map display layer are logically and physically separated, and a dynamic integration system for overseas peripheral geographic information is developed ( The computer software copyright has been obtained, 2014SR217380), and the OSM data storage, rule addition and deletion, data model conversion and other functions have been realized, and the open source database PostgreSQL is used to manage the data.
[0082] my country's 1:50,000 surrounding geographic information model is used as the conversion target model, which includes seven categories, including water system, residential areas and facilities, transportation, pipelines, boundaries and political areas, landforms and soil quality, and vegetation. Different categories are subdivided into different feature layers according to the geometric types of features, and each object h...
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