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TEMPORAL CORRELATION OF METADATA ERRORS FOR COMMERCIAL SATELLITE IMAGES: REPRESENTATION AND EFFECTS ON STEREO EXTRACTION ACCURACY

机译:商业卫星图像元数据误差的时间相关性:表示和效果立体声提取精度

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Extraction of ground points using a basic stereo pair of commercial satellite electro-optical images typically yields vertical errors much smaller than expected. In particular, the magnitude of vertical errors relative to horizontal errors is significantly smaller than expected based on imaging geometry (convergence angle, etc.) alone. This paper suggests that temporal correlation or similarity of metadata (sensor position, attitude) errors between two same-pass images is the major cause of this phenomenon. It discusses the sources of temporal correlation, how it can be represented, and how an optimal ground point extraction algorithm detailed in the paper uses this representation in order to provide the best possible 3D location and corresponding 3×3 error covariance for reliable predicted solution accuracy. This paper also provides an estimate for temporal correlation, approximately 0.70 (70%), and explains how this value was derived based on the ratio of measured 0.9p vertical errors to measured 0.9p horizontal errors compiled over many stereo pairs and ground truth points as described in various papers in the literature. As demonstrated in this paper, based on simulation and error propagation for typical stereo geometry, if this correlation is not accounted for, predicted 0.9p vertical error is approximately 60% too large. Knowledge of temporal correlation is essential for reliable stereo accuracy prediction as well as proper modeling of a priori metadata uncertainty in the support of metadata adjustment in a value-added process, such as registration to sparse control or a block adjustment.
机译:的使用碱性立体声对商业卫星电光图像的地面点提取通常产生垂直误差比预期的要小得多。特别是,垂直误差的相对于水平方向的误差的幅度是小的显著基于成像几何形状(会聚角等)单独高于预期。本文提出的元数据即时间相关性或相似性(传感器位置,姿态)两个相同遍图像之间的误差是这种现象的主要病因。它讨论了时间相关性,它是如何被表示的来源,并在本文详细的最佳地面点提取算法,以便提供最好的可能的3D位置和相应的可靠预测的解的精度的3×3的误差协方差如何使用这种表示。本文还提供了用于时间相关性的估计,约0.70(70%),并解释该值是如何基于所测量的垂直0.9P错误到编过许多对立体声和地面实况点作为测量0.9P水平误差的比率导出的在文献中以各种各样的论文中描述。正如本文证明的,基于仿真和错误传播为典型的立体几何形状,如果该相关性是不是占,预测0.9P垂直误差约为60%过大。时间相关性的知识是用于可靠立体声精度预测以及在支撑在一个增值过程的元数据的调整,如注册到稀疏控制或块调整的先验元数据的不确定性的正确建模是必不可少的。

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