首页> 外文会议>第21届国际摄影测量与遥感大会(ISPRS 2008)论文集 >BUNDLE ADJUSTMENT OF MARS HIRISE ORBITER STEREO IMAGES BASED ON THE RIGOROUS SENSOR MODEL
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BUNDLE ADJUSTMENT OF MARS HIRISE ORBITER STEREO IMAGES BASED ON THE RIGOROUS SENSOR MODEL

机译:基于严格传感器模型的火星海怪立体图像的束调整

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Launched in August 2005, the Mars Reconnaissance Orbiter (MRO)'s primary goal is to obtain detailed morphologic information on the Martian surface using its onboard HiRISE sensor with a 0.3-meter ground resolution. However, inconsistencies between HiRISE stereo images must be removed based on the rigorous sensor model for the best level of accuracy. The new rigorous sensor model is developed specially for HiRISE due to its unusual complex camera design so that the mosaic of multiple image strips could be processed simultaneously under a uniform sensor model. A bundle adjustment (BA) based on this rigorous sensor model is implemented on two stereo pairs covering Husband Hill and Victoria Crater. After BA, the significantly reduced back projection residuals indicate that the inconsistencies are removed and the refined exterior orientation parameters are ready for mapping the Martian surface. Furthermore, 4 ground points measured from geo-registered Spirit rover images are incorporated into the BA as ground control points. Reduced inconsistencies on ground features between orbital intersection and measurements from rover images after BA indicate the mapping potential of orbital-ground integration. Small motions of the spacecraft around its nominal pointing, called jitter, has been detected on HiRISE trajectory data. The topographic effect of jitter is evaluated in this paper. Though its effect is insignificant when mapping small areas, further investigation needs to be performed so that the effect can be removed or reduced when mapping large areas.
机译:火星侦察轨道器(MRO)于2005年8月发射,其主要目标是使用机载HiRISE传感器(地面分辨率为0.3米)来获取火星表面的详细形态信息。但是,必须基于严格的传感器模型消除HiRISE立体图像之间的不一致,才能获得最佳的准确性。新的严格的传感器模型是专门为HiRISE开发的,这是因为它具有非同寻常的复杂相机设计,因此可以在统一的传感器模型下同时处理多个图像条的马赛克。在覆盖丈夫山和维多利亚火山口的两个立体声对上实现了基于此严格传感器模型的捆绑调整(BA)。在BA之后,显着减少的反投影残差表明已消除了不一致性,并且已准备好精确的外部定向参数以绘制火星表面。此外,将从地理登记的Spirit Rover图像中测量的4个地面点合并到BA中作为地面控制点。在BA指示轨道-地面整合的映射潜力之后,减少了轨道交叉点与流动站图像的测量之间的地面特征的不一致性。在HiRISE轨迹数据上已检测到航天器绕其标称指向的微小运动,称为抖动。本文对抖动的地形影响进行了评估。尽管在绘制小区域时其效果微不足道,但是需要进行进一步的研究,以便在绘制大区域时可以消除或减小这种影响。

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