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Post launch quality assurance approaches for high resolution space borne optical sensor data

机译:发布高分辨率空间传输光学传感器数据的发布质量保证方法

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Data acquired by space borne systems is subjected to inherent deviations in geometric and radiometric aspects in terms of true representation of observed earth features. Significantly, high resolution data is more sensitive towards its radiometric accuracies and its quality. Raw data is preprocessed incorporating all corrections which are modeled using prelaunch test data. However, it is necessary to estimate post launch performance and its characterization for understanding the deviations in the orbit phase from the lab characterization to produce real world objects accurately in terms of their positional and spectral characteristics. In this paper the emphasis is made w.r.t the early orbit characterization of the Resourcesat-2A, LISS4 multispectral data products which were operationalized during February 2017. The Radiometric characterization is performed through in flight LED Calibration, Non illumination area imaging, global Radiometric Sites, cross calibration with the contemplating sensors. MTF is estimated through edge based artificial targets and vicarious calibration exercises. The Geometric calibration exercises were carried out by estimating positional accuracy consistency through longer paths, different homogeneous and heterogeneous terrains. Assurance of time series data consistency and systematic coverage is estimated after path lock, to provide contiguous data for the support of applications based on larger extents. All the calibrations exercises were carried out in iterative mode and finally achieved the targeted specifications. Over all Image rating is estimated by NIIRS.
机译:根据观察到的地球特征的真实表示,由空间传播系统获取的数据在几何和辐射尺寸方面进行了固有的偏差。值得注意的是,高分辨率数据对其辐射精度和质量更敏感。原始数据被预处理地结合所有校正,这些校正都是使用预先测试数据建模的。然而,有必要估计发布后的发布性能及其表征,以了解从实验室表征的轨道阶段中的偏差,以便在其位置和光谱特性方面准确地生产现实世界对象。在本文中,重点是WRT的资源-2a的早期轨道表征,LISS4 MultiSpectral数据产品在2017年2月期间运行。通过飞行LED校准,非照明区域成像,全局辐射位点,交叉进行辐射表征。用考虑传感器校准。通过基于边缘的人工目标和替代校准练习估计MTF。通过估计通过更长的路径,不同的均匀和异质地形的位置精度一致性来进行几何校准练习。在路径锁定之后估计时间序列数据一致性和系统覆盖的保证,为基于较大范围的应用提供常用数据。所有校准练习都在迭代模式下进行,最后实现了目标规格。在所有图像评级上估计是Niirs的估算。

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