首页> 外文会议>International Conference of Sensors and Models in Photogrammetry and Remote Sensing >EVALUATION AND ANALYSIS OF A PARAMETRIC APPROACH FOR SIMULTANEOUS SPACE RESECTION-INTERSECTION OF HIGH RESOLUTION SATELLITE IMAGES WITHOUT USING GROUND CONTROL POINTS
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EVALUATION AND ANALYSIS OF A PARAMETRIC APPROACH FOR SIMULTANEOUS SPACE RESECTION-INTERSECTION OF HIGH RESOLUTION SATELLITE IMAGES WITHOUT USING GROUND CONTROL POINTS

机译:不使用地面控制点的高分辨率卫星图像同时空间切除术的参数化方法评价与分析

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This paper initially proves mathematically that the solution of the relative orientation of the push broom stereo images leads to a set of ill-posed system of observation equations which means no relative orientation for this kind of imageries is possible. It is then demonstrated that the only way to bypass the inherent rank deficiency in the system of the relative orientation equations, is to incorporate fictitious data as known values into the equations. The proposed solutions given so far for the relative orientation of the push-broom images use a physical collinearity model and incorporate the so-called Virtual Ground Control points (VCPs) to bypass the ill-conditioning problem. The main objective of this paper is to replace the physical collinearity model with the 3D-affine transformation and use fictitious height information for the solution of the relative orientation of the push-broom images. The main advantage gained by this replacement model is its independence with respect to the sensor's interior orientation parameters and also the simplicity of its functional model. Cartosat-1 P5 stereo images over a highly mountainous terrain are used to evaluate the potential of the 3D-affine for the solution of the aforementioned problem. The tests conducted in this research work indicate that the 3D-affine model with fictitious information can eliminate the ill-posed problem associated with the relative orientation of the push-broom images. However, the main disadvantage of the 3D-affine model is the fact that it imposes certain level of model deformation into the generated relative DEM. This paper also demonstrates the influence of the inclusion of the perspective-to-parallel transformation coefficient into the 3D-affine resection-intersection equations. The main contribution of this paper is, therefore, the solution of the relative orientation of the push-broom images with the 3D-affine model using fictitious information. The superimposed height deformation on the generated relative DEM is also analyzed.
机译:本文最初在数学上证明,推扫帚立体图像的相对取向的解决方案导致一组不良的观察方程系统,这意味着没有对这种成像仪的相对取向是可能的。然后证明,绕过相对取向方程的系统中固有等级缺陷的唯一方法是将虚拟数据作为已知值纳入等式。到目前为止给出的所提出的解决方案对于推送扫帚图像的相对取向使用物理相连模型,并将所谓的虚拟地面控制点(VCP)纳入绕过不良状态。本文的主要目的是用3D仿射变换替换物理相连模型,并利用虚拟高度信息来解决推扫帚图像的相对取向的解决方案。通过该替换模型获得的主要优点是其独立于传感器的内部方向参数以及其功能模型的简单性。在高山地地形上使用刷新-1 P5立体图像用于评估3D仿射的潜力为上述问题的解决方案。在本研究工作中进行的测试表明,具有虚构信息的3D仿射模型可以消除与推扫帚图像的相对取向相关的不存在的问题。然而,3D仿射模型的主要缺点是它对产生的相对DEM施加了一定程度的模型变形。本文还展示了将透视上的转化系数包含在3D酰胺切除术中的影响。因此,本文的主要贡献是使用虚构信息解决与3D仿射模型的推扫帚图像的相对取向的解决方案。还分析了产生的相对DEM上的叠加高度变形。

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