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首页> 外文期刊>ISPRS Annals of the Photogrammetry, Remote Sensing and Spatial Information Sciences >STUDY OF LARGE-SCALE BLOCK ADJUSTMENT WITH LASER ALTIMETRY DATA GLAS OF ZY3 IMAGES OVER SHANDONG
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STUDY OF LARGE-SCALE BLOCK ADJUSTMENT WITH LASER ALTIMETRY DATA GLAS OF ZY3 IMAGES OVER SHANDONG

机译:山东ZY3 ZY3图像激光高速度数据GLAS的大规模块调整研究

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摘要

In the global mapping work, there will be no control points or uneven distribution of control points. The traditional method of single scene image correction based on ground control points is not suitable for modern surveying and mapping, which has no available control points in a large range. New control data is urgently needed to make up for the influence of traditional control points on surveying and mapping. In this paper, aiming at improving the elevation accuracy of ZY-3 uncontrolled point surveying, a filtering principle based on the analysis based on waveform analysis and the stereo image pair based on tie points is proposed for the screening of GLAS laser elevation points. A new method using high-reliability laser elevation control points as the height constraint and the regional network adjustment of ZY-3 images without control points is studied. Through the experiment in Shandong Province, it is proved that the elevation accuracy of the adjustment can be improved obviously by introducing the selected laser points. The mean error of adjustment elevation is increased from −2.297 to 0.216m and the mean square error of elevation is increased from 3.193m to 2.007m, significantly improving the elevation positioning accuracy of adjustment.
机译:在全球映射工作中,控制点不会有控制点或不均匀分布。基于地面控制点的单场图像校正的传统方法不适用于现代测量和映射,其在大范围内没有可用的控制点。迫切需要新的控制数据来弥补传统控制点对测量和映射的影响。本文旨在提高ZY-3不受控制点测量的高程精度,提出了一种基于基于波形分析的分析的滤波原理和基于扎带点的立体图像对,用于筛选GLAS激光升降点。研究了一种新方法,使用高可靠性激光升降控制点作为高度约束以及没有控制点的ZY-3图像的区域网络调整。通过山东省的实验,证明了通过引入所选激光点的显而易见的调整的高程精度。调节高程的平均误差从-2.297增加到0.216米,均匀的平均误差从3.193米增加到2.007米,显着提高了调整的高程定位精度。

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