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DEVELOPMENT OF LARGE AREA COVERING HEIGHT MODEL

机译:大面积覆盖高度模型的发展

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Height information is a basic part of topographic mapping. Only in special areas frequent update of height models is required, usually the update cycle is quite lower as for horizontal map information. Some height models are available free of charge in the internet; for commercial height models a fee has to be paid. Mostly digital surface models (DSM) with the height of the visible surface are given and not the bare ground height, as required for standard mapping. Nevertheless by filtering of DSM, digital terrain models (DTM) with the height of the bare ground can be generated with the exception of dense forest areas where no height of the bare ground is available. These height models may be better as the DTM of some survey administrations. In addition several DTM from national survey administrations are classified, so as alternative the commercial or free of charge available information from internet can be used. The widely used SRTM DSM is available also as ACE-2 GDEM corrected by altimeter data for systematic height errors caused by vegetation and orientation errors. But the ACE-2 GDEM did not respect neighbourhood information. With the worldwide covering TanDEM-X height model, distributed starting 2014 by Airbus Defence and Space (former ASTRIUM) as WorldDEM, higher level of details and accuracy is reached as with other large area covering height models. At first the raw-version of WorldDEM will be available, followed by an edited version and finally as WorldDEM-DTM a height model of the bare ground. With 12m spacing and a relative standard deviation of 1.2m within an area of 1° × 1° an accuracy and resolution level is reached, satisfying also for larger map scales. For limited areas with the HDEM also a height model with 6m spacing and a relative vertical accuracy of 0.5m can be generated on demand. By bathymetric LiDAR and stereo images also the height of the sea floor can be determined if the water has satisfying transparency. Another method of getting bathymetric height information is an analysis of the wave structure in optical and SAR-images. An overview about the absolute and relative accuracy, the consistency, error distribution and other characteristics as influence of terrain inclination and aspects is given. Partially by post processing the height models can or have to be improved.
机译:高度信息是地形映射的基本部分。只有在特殊区域中,需要频繁更新高度模型,通常更新周期非常低于水平地图信息。在互联网上免费提供部分高度型号;对于商业高度模型,必须支付费用。根据标准映射所需的具有可见表面高度的数字表面模型(DSM),而不是裸地高度。然而,通过偏心的森林区域除了没有裸机高度的密集森林区域,可以产生具有裸地高度的DSM的DSM,数字地形模型(DTM),其中可以使用裸地的高度。这些高度模型可能更好地作为某些调查主管部门的DTM。此外,来自国家调查主管部门的几个DTM被分类,因此可以使用来自互联网的商业或免费可用信息。广泛使用的SRTM DSM也可用作ACE-2 GDEM,由Altimeter数据校正,用于由植被和方向误差引起的系统高度误差。但ACE-2 GDEM不尊重邻里信息。随着全球覆盖Tandem-X高度模型,通过空中客车防御和空间(前横梁)作为Worlddem的分布式,与其他大面积覆盖高度型号一样,达到更高水平的细节和准确性。首先,WorldDem的原始版本将可用,然后是编辑版本,最后作为WorldDEM-DTM的裸机高度模型。在1°×1°的面积内具有12m间距和1.2m的相对标准偏差,达到精度和分辨率水平,也可以满足较大的地图尺度。对于具有HDEM的有限区域,也可以根据需要产生具有6m间距的高度模型,并且可以根据需要产生0.5米的相对垂直精度。通过碱基延长脉和立体图像,也可以确定水的透明度,可以确定海底的高度。获得碱度高度信息的另一种方法是光学和SAR图像中的波结构的分析。给出了关于绝对和相对准确性的概述,给出了地形倾斜度和方面的影响的一致性,错误分布和其他特征。部分通过后处理高度模型可以或必须改善。

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