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Radiometric Calibration Methodology of the Landsat 8 Thermal Infrared Sensor

机译:Landsat 8热红外传感器的辐射定标方法

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The science-focused mission of the Landsat 8 Thermal Infrared Sensor (TIRS) requires that it have an accurate radiometric calibration. A calibration methodology was developed to convert the raw output from the instrument into an accurate at-aperture radiance. The methodology is based on measurements obtained during component-level and instrument-level characterization testing. The radiometric accuracy from the pre-flight measurements was estimated to be approximately 0.7%. The calibration parameters determined pre-flight were updated during the post-launch checkout period by utilizing the on-board calibration sources and Earth scene data. These relative corrections were made to adjust for differences between the pre-flight and the on-orbit performance of the instrument, thereby correcting large striping artifacts observed in Earth imagery. Despite this calibration correction, banding artifacts (low frequency variation in the across-track direction) have been observed in certain uniform Earth scenes, but not in other uniform scenes. In addition, the absolute calibration performance determined from vicarious measurements have revealed a time-varying error to the absolute radiance reported by TIRS. These issues were determined to not be caused by the calibration process developed for the instrument. Instead, an investigation has revealed that stray light is affecting the recorded signal from the Earth. The varying optical stray light effect is an ongoing subject of evaluation and investigation, and a correction strategy is being devised that will be added to the calibration process.
机译:Landsat 8热红外传感器(TIRS)以科学为中心的任务要求它具有准确的辐射度校准。开发了一种校准方法,可将仪器的原始输出转换为准确的小孔径辐射。该方法基于在组件级和仪器级特性测试中获得的测量结果。飞行前测量的辐射精确度估计约为0.7%。通过使用机载校准源和地球场景数据,在起飞后结帐期间更新飞行前确定的校准参数。进行这些相对校正是为了调整仪器的飞行前和在轨性能之间的差异,从而校正在地球图像中观察到的大条带状伪像。尽管进行了此校准校正,但在某些统一的地球场景中已观察到条带伪影(跨轨方向的低频变化),而在其他统一的场景中则未观察到。此外,通过替代测量确定的绝对校准性能已揭示了TIRS报告的绝对辐射度随时间变化的误差。确定这些问题不是由为仪器开发的校准过程引起的。相反,一项调查显示,杂散光正在影响来自地球的录制信号。不断变化的杂散光效应是评估和研究的一个持续课题,并且正在设计一种校正策略,将其添加到校准过程中。

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