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On-Orbit Star-Based Calibration and Modulation Transfer Function Measurements for PLEIADES High-Resolution Optical Sensors

机译:PLEIADES高分辨率光学传感器在轨基于星标的校准和调制传递函数测量

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The accurate on-orbit radiometric calibration of optical sensors has become a challenge for space agencies who combine their efforts through international working groups such as CEOS/WGCV or WMO/GSICS with the objective of ensuring the consistency of space measurements and to reach the absolute accuracy required by increasingly demanding scientific requirements. Different targets are generally used for calibration, depending on the specific features of the sensor or spacecraft: from on-board calibration systems to ground targets, they can all profitably be characterized and modeled. Thanks to their agility, some satellites have the capability to view extra-terrestrial targets such as stars. Although the spectral irradiance of some stars is known with very high accuracy, very little work has been done on their use as an absolute reference for the calibration of remote sensors. The reason is their low irradiance, requiring a small instantaneous field of view to observe them. Moreover, their use as a calibration reference also requires a good knowledge of the instrument's modulation transfer function (MTF). The MTF which drives the spatial quality is a major parameter for high-resolution (HR) optical remote sensors as it indicates how spatial frequencies are transmitted and weakened by the imaging system. On the other hand, stars provide ideal targets for MTF measurement as they can be assimilated to point sources. This paper proposes a method for simultaneously computing the absolute radiometric calibration of PLEIADES' HR optical sensors and their MTF, using stars. The radiometric model is solved in Fourier space for point sources whose irradiance can be easily controlled. Results are provided for both PLEIADES satellites and compared to the official radiometric calibration and MTF. The quality of the results and the main error contributors are discussed.
机译:光学传感器的精确在轨辐射定标已成为航天机构的挑战,航天机构需要通过CEOS / WGCV或WMO / GSICS等国际工作组来共同努力,以确保空间测量的一致性并达到绝对精度。要求越来越高的科学要求。通常根据传感器或航天器的特定功能使用不同的目标进行校准:从机载校准系统到地面目标,可以对所有目标进行有利地表征和建模。由于它们的敏捷性,某些卫星具有查看诸如星星之类的地面目标的能力。尽管已知某些恒星的光谱辐照度非常高精度,但在将其用作遥感器校准的绝对参考时,所做的工作很少。原因是它们的辐照度低,需要很小的瞬时视野才能观察到它们。此外,将它们用作校准参考还需要对仪器的调制传递函数(MTF)有很好的了解。驱动空间质量的MTF是高分辨率(HR)光学遥感器的主要参数,因为它指示了成像系统如何传输和减弱空间频率。另一方面,恒星为MTF测量提供了理想的目标,因为它们可以被同化为点源。本文提出了一种利用星标同时计算PLEIADES HR光学传感器及其MTF的绝对辐射定标的方法。对于傅立叶空间中的辐射源,可以轻松控制辐射源的辐射源模型。提供了两个PLEIADES卫星的结果,并与官方的辐射校准和MTF进行了比较。讨论了结果的质量以及主要的误差因素。

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