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Accuracy Analysis of Generalized Imaging Models for QuickBird Stereo Imagery

机译:QuickBird立体影像广义成像模型的精度分析

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This paper analyzes the accuracies of different generalized imaging models (but RFM) for a separate-orbit QuickBird stereo imager pair, including extended DLT model, parallel projection model, projection-modified affine model, parallel perspective model, time-variant-parameterized affine model and the proposed time-variant-parameterized parallel perspective model. The experimental results have revealed the spatial dynamic characteristic of the QuickBird sensor. Due to the continuous re-orientation of the sensor, imaging models with constant parameters such as extended DLT model and affine projection model, can not describe the imaging geometry of the QuickBird imagery sufficiently. By contrast, imaging models with time-variant parameters perform much better. Meanwhile, the parallel perspective model with time-variant parameters shows superiority to the time-variant-parameterized affine model. With no less than 14 ground control points, parallel perspective model with time-variant parameters can provide the accuracy of sub-pixel level, which is close to that achieved by the more rigorous RFM.
机译:本文分析了分离轨道QuickBird立体成像器对的不同广义成像模型(但RFM)的精度,包括扩展DLT模型,平行投影模型,投影修改的仿射模型,平行透视模型,时变参数化仿射模型以及提出的时变参数化并行透视模型。实验结果揭示了QuickBird传感器的空间动态特性。由于传感器的不断重新定向,具有恒定参数的成像模型(例如扩展的DLT模型和仿射投影模型)无法充分描述QuickBird成像的成像几何形状。相比之下,具有时变参数的成像模型的性能要好得多。同时,具有时变参数的并行透视模型显示出优于时变参数化仿射模型。在不少于14个地面控制点的情况下,具有时变参数的并行透视模型可以提供亚像素级别的精度,这与更严格的RFM所达到的精度相近。

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