首页> 外文期刊>Photogrammetric Engineering & Remote Sensing: Journal of the American Society of Photogrammetry >Theoretical Analysis of the Iterative Photogrammetric Method to Determining Ground Coordinates from Photo Coordinates and a DEM
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Theoretical Analysis of the Iterative Photogrammetric Method to Determining Ground Coordinates from Photo Coordinates and a DEM

机译:从摄影坐标和DEM确定地面坐标的迭代摄影测量方法的理论分析

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摘要

It is necessary to determine ground coordinates from a single aerial image and a digital elevation model (DEM). A widely used method in photogrammetry is to iteratively calculate the coordinates based on the inverse collinearitv equations. The iterative photogrammetric method may be divergent when the terrain surface becomes complicated. However, there is a lack of theoretical analysis of this method. This paper theoretically analyzes the convergence condition and the convergence speed of the method,and validates the theory using a simulated surface containing various slope conditions. The elevation angle B of the view ray and the inclination angle a of the profile, intersected by the terrain surface and the vertical view plane, play a critical role in the method. The necessary and sufficient condition for convergence is a < 6. The convergence speed is quantified as a function of a, 0, the convergence threshold AT and the offset ΔZ_0 of initial elevation estimate.
机译:必须从单个航拍图像和数字高程模型(DEM)确定地面坐标。摄影测量中广泛使用的方法是基于逆共线性方程迭代地计算坐标。当地形表面变得复杂时,迭代摄影测量方法可能会有所不同。但是,缺乏这种方法的理论分析。本文从理论上分析了该方法的收敛条件和收敛速度,并使用包含各种边坡条件的模拟表面对该理论进行了验证。视线的仰角B和轮廓的倾斜角α与地形表面和垂直视平面相交,在该方法中起着至关重要的作用。收敛的必要和充分条件是<6。收敛速度根据a,0,收敛阈值AT和初始高程估计的偏移量ΔZ_0进行量化。

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