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Information content capabilities of very high resolution optical space imagery for updating GIS database

机译:高分辨率光学空间影像的信息内容功能可更新GIS数据库

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摘要

Nowadays, the number and capacity of very high resolution optical satellites grows permanently, so the access to very high resolution space images is not any more a problem. The use of Geographic Information Systems (GISs) together with Remote Sensing became important. With the increased ground resolution a competition to aerial images exist. For the generation of topographic maps, today available as GIS, the accuracy and the information content - what elements can be identified in the image - are important. Both may limit the presentation scale of topographic maps. As horizontal accuracy 0.25mm up to 0.3mm in the map scale are accepted. The required information content is more complicate. The object details to be presented in topographic maps vary from area to area which is based on the planned and unplanned areas. In this study, images from IRS-1C, Kompsat-1, SPOT 5, OrbView-3, IKONOS, QuickBird and WorldView-1 have been used for topographic mapping. For this reason, Zonguldak test fields are an important area for applications of the high resolution imageries. The details which can be identified in the space images dominantly depends upon the ground resolution, available as ground sampling distance (GSD). In this study, high resolution imageries have been tested depending on the GSD and corresponding to the map scales for updating GIS database. © 2015 SPIE.
机译:如今,超高分辨率光学卫星的数量和容量一直在不断增长,因此访问超高分辨率空间图像不再是问题。地理信息系统(GIS)与遥感技术的结合变得非常重要。随着地面分辨率的提高,存在着对航空影像的竞争。对于当今可作为GIS使用的地形图的生成,准确性和信息内容(可以在图像中识别出哪些元素)非常重要。两者都可能限制地形图的显示比例。由于水平精度在地图比例尺中为0.25mm至0.3mm。所需的信息内容更加复杂。地形图中要显示的对象详细信息因规划和非规划区域的不同而异。在这项研究中,来自IRS-1C,Kompsat-1,SPOT 5,OrbView-3,IKONOS,QuickBird和WorldView-1的图像已用于地形图绘制。因此,Zonguldak测试场是高分辨率图像应用的重要领域。在空间图像中可以识别的细节主要取决于地面分辨率,可以作为地面采样距离(GSD)获得。在这项研究中,已经根据GSD并测试了对应于更新GIS数据库的地图比例的高分辨率图像。 ©2015 SPIE。

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