QuickBird立体卫星图像的偏差校正rpc:以上海为例

X. Tong, Shijie Liu
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引用次数: 1

摘要

随着高分辨率卫星图像(HRSI)在城市测绘和变化检测中的广泛应用,对高分辨率卫星图像的高精度度量产品的需求不断增加。然而,由于传感器固有的方位偏差,厂商提供的有理多项式系数(RPCs)在确定地面点时不能产生准确的坐标。在QuickBird立体HRSI的基础上,提出了两种消除偏置的方案,分别是rpc修正方案和rpc再生方案。实验结果表明,对于测试区域,修正rpc仅负责修正位移偏差,其定位精度较低,在平面上为2 ~ 3米,在高程上为3米。然而,在最少2个控制点的情况下,补偿移位和漂移偏差的再生rpc产生的平面精度约为0.6米,高程精度约为1米。如果有更多的控制点可用,更推荐使用仿射模型偏差补偿的rpc再生。偏差校正后的rpc在平面测量中提供了稳定的半米精度。此外,消除偏置的rpc促进了无偏置的应用。它们可以在摄影测量系统中替代原件,产生高精度,用于进一步处理,如正交校正和DEM生成,以提供成本优势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bias-corrected RPCs for QuickBird stereo satellite imagery: A case study in Shanghai
Along with a wide spread application of high resolution satellite imagery (HRSI) in urban mapping and change detection, the demand is increasing for higher accuracy metric products from HRSI. However, due to the inherent sensor orientation bias, the rational polynomial coefficients (RPCs) provided by the vendors can not produce accurate coordinates in ground point determination. Based on the QuickBird stereo HRSI, this paper has presented the performance of two schemes for bias elimination, including RPCs modification and RPCs regeneration. The experimental results show that, for the testing area, modified RPCs yields low positioning accuracy of 2 - 3 meters in planimetry and 3 meters in elevation since it is responsible for correcting only the shift bias. However, with minimal 2 control points, regenerated RPCs with shift and drift bias compensated produces accuracy of about 0.6 meters in planimetry and 1 meter in elevation. If more control points are available, RPCs regeneration with affine model bias compensation is more recommended. The bias-corrected RPCs provide a steady accuracy of half meter in planimetry. Furthermore, the bias-eliminated RPCs facilitate bias-free application. They can be used as replacements of the originals producing high accuracy in photogrammetric system for further processing such as ortho-rectification and DEM generation to provide cost advantage.
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