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Geo-Positioning Accuracy Using Multiple-Satellite Images: IKONOS, QuickBird, and KOMPSAT-2 Stereo Images

机译:使用多卫星图像的地理定位精度:IKONOS,QuickBird和KOMPSAT-2立体图像

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This paper investigates the positioning accuracy of image pairs achieved by integrating images from multiple satellites. High-resolution satellite images from IKONOS, QuickBird, and KOMPSAT-2 for Daejeon, Korea were combined to produce pairs of stereo images. From single-satellite stereo pairs to multiple-satellite image pairs, all available combinations were analyzed via a rational function model (RFM). The positioning accuracy of multiple-satellite pairs was compared to a typical single-satellite stereo pair. The results show that dual-satellite integration can be an effective alternative to single-satellite stereo imagery for horizontal position mapping, but is less accurate for vertical mapping. The integration of additional higher-resolution images can improve the overall accuracy of the existing two images, but, conversely, may result in lower accuracy when very weak convergence or bisector elevation (BIE) angles occur. This highlights that the use of higher resolution images may not ensure improved accuracy, as it can result in very weak geometry. The findings confirm that multiple-satellite images can replace or enhance typical stereo pairs, but also suggest the need for careful verification, including consideration of various geometric elements and image resolution. This paper reveals the potential, limitations, and important considerations for mapping applications using images from multiple satellites.
机译:本文研究了通过整合多颗卫星的图像获得的图像对的定位精度。来自韩国大田的IKONOS,QuickBird和KOMPSAT-2的高分辨率卫星图像被合并以生成成对的立体图像。从单卫星立体声对到多卫星图像对,所有可用组合都通过有理函数模型(RFM)进行了分析。将多卫星对的定位精度与典型的单卫星立体声对进行了比较。结果表明,对于水平位置映射,双卫星集成可以有效替代单卫星立体图像,但对于垂直映射而言,双精度集成的准确性较低。附加的高分辨率图像的集成可以提高现有两个图像的整体精度,但是相反,当出现非常弱的会聚或平分线(BIE)角度时,可能会导致较低的精度。这突出表明,使用较高分辨率的图像可能无法确保更高的精度,因为这可能会导致几何形状非常薄弱。这些发现证实了多卫星图像可以代替或增强典型的立体声对,但也建议需要仔​​细验证,包括考虑各种几何元素和图像分辨率。本文揭示了使用多颗卫星的图像进行地图绘制的潜力,局限性和重要考虑因素。

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