首页> 外文会议>Conference on Earth Observing Systems VII, Jul 7-10, 2002, Seattle, USA >In-flight radiometric calibration of the Advanced Land Imager and Hyperion sensors on the EO-1 platform and comparisons with other earth observing sensors
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In-flight radiometric calibration of the Advanced Land Imager and Hyperion sensors on the EO-1 platform and comparisons with other earth observing sensors

机译:在EO-1平台上对Advanced Land Imager和Hyperion传感器进行的空中辐射定标,并与其他地球观测传感器进行比较

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摘要

The radiometric calibration of the two optical sensors on the Earth Observing One satellite has been studied as a function of time since launch. The calibration has been determined by ground reference calibrations at well-characterized field sites, such as White Sands Missile Range and dry playas, and by reference to other sensors such as the Enhanced Thematic Mapper Plus (ETM+) on Landsat 7. The ground reference calibrations of the Advanced Land Imager (ALI) give results consistent with the on-board solar calibrator and show a significant shift since preflight calibration in the short wavelength bands. Similarly, the ground reference calibrations of Hyperion show a change since preflight calibration, however, for Hyperion the largest changes are in the short wave infrared region of the spectrum. Cross calibration of ALI with ETM+ is consistent with the ground reference calibrations in the visible and near infrared. Results showing the changes in radiometric calibration are presented.
机译:自发射以来,已经研究了对地球观测一颗卫星上两个光学传感器的辐射定标,并将其作为时间的函数。该校准是通过在性能良好的野外站点(例如,白沙导弹靶场和干式Playas)上的地面参考校准确定的,并且已参考Landsat 7上的其他传感器(例如,增强型专题测绘仪Plus(ETM +))进行了确定。 Advanced Land Imager(ALI)的结果给出了与车载太阳能校准器一致的结果,并且自从在短波段进行飞行前校准以来,显示出明显的偏移。同样,Hyperion的地面参考校准自飞行前校准以来显示了变化,但是,对于Hyperion,最大的变化是在光谱的短波红外区域。使用ETM +进行的ALI交叉校准与可见光和近红外中的地面参考校准一致。结果显示了辐射定标的变化。

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