资源三号03星激光测高数据处理与复合测绘应用

Laser altimetry data processing and combined surveying application of ZY3-03 satellite

  • 摘要: 资源三号03星是自然资源部主持建造的用于1∶50 000立体测图的陆地遥感业务卫星,该星装备了业务化的激光测高仪,主要用于获取高精度高程控制点。论文针对资源三号03星激光测高数据,研究了标准化测绘处理流程和高程控制点提取方法,在内蒙古苏尼特右旗和江苏苏州开展了精度验证,并选择黑龙江和河北两个实验区开展了复合测绘应用验证。精度验证结果表明,资源三号03星激光点在内蒙古苏尼特右旗平坦区域高程精度为(0.051±0.232) m,在江苏苏州城市建成区的激光点总体精度为(0.414±6.213) m,经高程控制点提取和质量标记后的激光点高程误差为(−0.526±0.624) m,能满足1∶50 000测图高程控制需求。复合测绘应用表明,利用资源三号03星激光高程控制点,立体影像高程精度在黑龙江平坦地区能从5.27 m提高到2.58 m,河北太行山区能从11.25 m提高到4.45 m;无论是平地还是山区,资源三号03星激光高程控制点均能有效提高立体影像的高程精度并满足1∶50 000测图需求。

     

    Abstract: ZY3-03 is a land remote sensing satellite for 1: 50 000 stereo mapping built by the Ministry of Natural Resources. It is equipped with operational laser altimeter, which is mainly used to obtain high-precision elevation control points. In this paper, aiming at the laser altimetry data of ZY3-03 satellite, the standardized surveying processing flow and the method of extracting elevation control points is studied. Moreover, the accuracy verification in Sunid Right Banner of Inner Mongolia and Suzhou of Jiangsu Province is implemented, and the combined surveying and mapping application in Heilongjiang and Hebei areas is experimented and validated. The accuracy verification results show that the elevation accuracy of ZY3-03 laser points in the flat area of Sunid Right Banner in Inner Mongolia is (0.051±0.232) m, and the overall accuracy of the laser points in the urban area of Suzhou, Jiangsu is (0.414±6.213) m, and the elevation accuracy after elevation control points extraction is (−0.526±0.624) m, which can meet the elevation control requirement of 1:50 000 mapping; The application of combined surveying and mapping shows that the elevation accuracy of stereo images can be improved from 5.27 m to 2.58 m in flat area of Heilongjiang and from 11.25 m to 4.45 m in Taihang mountain area of Hebei by using laser elevation control points derived from the ZY3-03 satellite. It is concluded that the elevation accuracy of stereo images can be effectively improved by using laser elevation control points of ZY3-03 satellite in both flat and mountainous areas, and the requirement of 1:50 000 mapping can be met.

     

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