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Multi-resolution topographic data extraction from Martian stereo imagery

机译:从火星立体影像中提取多分辨率地形数据

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The acquisition of high resolution topographic data such as Digital Terrain Models (DTMs) and orthoimages from various Martian stereo imagery is now readily available. The very successful European Space Agency (ESA) Mars Express mission includes the High Resolution Stereo Camera (HRSC) which has provided, since March 2004, an increasingly global set of along-track stereo coverage at relatively high spatial resolution ( < 100 m, mainly 12.5-25 m) over the Martian surface. Previous DTM generation was only accomplished with planned or serendipitous Viking Orbiter and more recently from Mars Orbiter Camera Narrow Angle (MOC-NA) stereo-pairs. Neither system was designed for stereo photogrammetric DTM generation. Recently, the NASA Mars Reconnaissance Orbiter (MRO) deployed two major optical pushbroom CCD cameras which are capable of across-track stereo targeting. Both Context Camera (CTX) and High Resolution Imaging Science Experiment (HiRISE) provide very high resolution stereo imagery at 6 m and submetre, respectively. A stereo processing chain has been developed which uses a non-rigorous sensor model with geodetic control derived from a reference stereo data source (HRSC) and is here shown to be successfully applied to CTX and HiRISE stereo imagery for 3 test areas. This processing chain is here demonstrated to generate excellent quality DTMs (up to a maximum grid spacing of 0.7 m with HiRISE and 10 m with CTX) and associated ortho images. The photogrammetric quality of these products is here verified using inter-comparisons with HRSC and Mars Orbiter Laser Altimeter (MOLA) data sets and shows good agreement.
机译:现在可以很容易地从各种火星立体图像中获取高分辨率地形数据,例如数字地形模型(DTM)和正射影像。非常成功的欧洲航天局(ESA)火星快车任务包括高分辨率立体摄像机(HRSC),自2004年3月以来,该摄像机以相对较高的空间分辨率(<100 m,主要是12.5-25 m)。上一代DTM仅使用计划的或偶然的维京轨道飞行器完成,最近才使用火星轨道照相机窄角(MOC-NA)立体声对完成。两种系统都不是为立体摄影测量DTM生成而设计的。最近,美国国家航空航天局(NASA)的火星侦察轨道器(MRO)部署了两个主要的光学扫帚CCD摄像机,这些摄像机能够进行跨轨立体声瞄准。上下文相机(CTX)和高分辨率成像科学实验(HiRISE)分别在6 m和1米处提供了非常高分辨率的立体图像。已经开发了立体处理链,该立体处理链使用具有从参考立体数据源(HRSC)派生的大地测量控制的非严格传感器模型,并在此处显示已成功应用于3个测试区域的CTX和HiRISE立体影像。在此证明此处理链可生成高质量的DTM(HiRISE的最大网格间距为0.7 m,CTX的最大网格间距为10 m)和相关的正交图像。这些产品的摄影测量质量已通过与HRSC和火星轨道激光高度计(MOLA)数据集之间的比较而得到验证,并显示出良好的一致性。

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