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Recent Progress in In-Flight Radiometric Calibration and Validation of the RapidEye Constellation of 5 Multispectral Remote Sensing Satellites

机译:5个多光谱遥感卫星的飞行中辐射校准和验证的飞行辐射校准和验证

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BlackBridge AG is a geospatial data provider which operates a constellation of five identical multispectral remote sensing satellites. These satellites cover five spectral bands in the visible (VIS) and near infrared (NIR) spectral range. Radiometric calibration of multispectral and hyperspectral instruments like those operated by BlackBridge AG is of fundamental importance if the data e.g. should be used for remote sensing applications or if the atmospheric influence to the data should be corrected using methods based on atmospheric transfer codes. For the RapidEye constellation three goals are achieved using calibration. First, spatial calibration corrects response differences for the individual CCD elements in one CCD array. Second, temporal calibration provides a comparable measurement of the five different cameras over time. Finally, absolute calibration links the relative digital number (DN) outputs of the sensors to absolute at-sensor radiance levels. This paper explains in detail the methodologies used for radiometric calibration of the five satellite constellation.
机译:Blackbridge AG是一个地理空间数据提供商,操作五个相同的多光谱遥感卫星的星座。这些卫星在可见光(VI)和近红外(NIR)光谱范围内覆盖五个光谱带。如果数据例如,如果是Blackbridge AG操作的多光谱和高光谱仪器的辐射校准是基本重要性的。应使用基于大气转移代码的方法纠正对数据的遥感应用,或者如果对数据的影响,应使用大气影响。对于Rapideye星座,使用校准实现了三个目标。首先,空间校准校正一个CCD阵列中各个CCD元素的响应差异。其次,时间校准随着时间的推移提供了五种不同的相机的相当测量。最后,绝对校准将传感器的相对数字数(DN)输出链接到绝对的传感器辐射电平。本文详细解释了五颗卫星星座的辐射校准的方法。

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