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Radiometric calibration of on-orbit satellite sensors using an improved cross-calibration method

机译:使用改进的交叉校准方法对在轨卫星传感器进行辐射定标

摘要

As the field of remote sensing continues to grow with the launches of many new and complex satellite sensors in the next year, the ability to provide absolute calibration of these sensors becomes paramount for the many environmental studies proposed. In particular, temporal studies that monitor global changes in atmospheric constituents, ocean and terrestrial temperatures, and vegetation require that changes in the sensor itself, over the period of the study, be understood so that the data may be corrected. Numerous studies have established that satellite sensors change in orbit with respect to preflight calibration, in some cases, up to 20% or more over periods of three years. This research describes the development of an improved cross-calibration method of on-orbit satellite sensor radiometric calibration. The objective of the cross-calibration method is to transfer one sensor's calibration to another sensor which is typically difficult or expensive to calibrate with other methods. The cross-calibration method is relatively inexpensive to apply, and therefore there was a strong incentive to improve the application of the method and the understanding of the uncertainties associated with the method. The primary effort in this work has been the development of a cross-calibration software program which provides the means to easily perform end-to-end cross-calibrations. The program allows for a multiplicity of sites to be run, provides a search mechanism in order to identify calibration sites with particular characteristics, and contains an extensive error analysis capability. As part of this work, a search for acceptable cross-calibration sites was also performed which would allow a reduction in uncertainties of the method. Calibrations of five different sensor band pairs using System Pour l'Observation de la Terre (SPOT) 3, Landsat Thematic Mapper, and Advanced Very High Resolution Radiometer (AVHRR) sensors are performed. Very good results are obtained when the results are compared with other more expensive calibration methods, and the calibrations yielded uncertainties lower than reported in previous work.
机译:随着明年新的和复杂的卫星传感器的推出,遥感领域将继续增长,对这些传感器进行绝对校准的能力对于提出的许多环境研究至关重要。尤其是,监视大气成分,海洋和陆地温度以及植被的全球变化的时间研究要求在研究期间了解传感器本身的变化,以便可以纠正数据。许多研究已经确定,卫星传感器在飞行前校准方面会在轨道上发生变化,在某些情况下,在三年的时间内,其变化高达20%或更多。这项研究描述了一种改进的在轨卫星传感器辐射校准的交叉校准方法。交叉校准方法的目的是将一个传感器的校准转移到另一个传感器,这通常很难用其他方法进行校准或昂贵。交叉校准方法的应用相对便宜,因此有强烈的动机来改进该方法的应用以及对与该方法相关的不确定性的理解。这项工作的主要工作是开发交叉校准软件程序,该程序提供了轻松执行端到端交叉校准的方法。该程序允许运行多个站点,提供搜索机制以识别具有特定特征的校准站点,并且包含广泛的错误分析功能。作为这项工作的一部分,还对可接受的交叉校准位点进行了搜索,这将减少方法的不确定性。使用系统观测点(SPOT)3,Landsat专题测绘仪和超高分辨率高分辨率辐射计(AVHRR)传感器对五个不同的传感器带对进行校准。当将结果与其他更昂贵的校准方法进行比较时,可以获得非常好的结果,并且校准产生的不确定性比以前的工作所报告的要低。

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  • 作者

    Scott Karen Patricia 1964-;

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  • 年度 1998
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  • 正文语种 en_US
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