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Radiometric calibration status of Landsat-7 and Landsat-5

机译:Landsat-7和Landsat-5的辐射定标状态

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Launched in April 1999, Landsat-7 ETM+ continues to acquire data globally. The Scan Line Corrector in failure in 2003 has affected ground coverage and the recent switch to Bumper Mode operations in April 2007 has degraded the internal geometric accuracy of the data, but the radiometry has been unaffected. The best of the three on-board calibrators for the reflective bands, the Full Aperture Solar Calibrator, has indicated slow changes in the ETM+, but this is believed to be due to contamination on the panel rather then instrument degradation. The Internal Calibrator lamp 2, though it has not been used regularly throughout the whole mission, indicates smaller changes than the FASC since 2003. The changes indicated by lamp 2 are only statistically significant in band 1, circa 0.3% per year, and may be lamp as opposed to instrument degradations. Regular observations of desert targets in the Saharan and Arabian deserts indicate the no change in the ETM+ reflective band response, though the uncertainty is larger and does not preclude the small changes indicated by lamp 2. The thermal band continues to be stable and well-calibrated since an offset error was corrected in late-2000. Launched in 1984, Landsat-5 TM also continues to acquire global data; though without the benefit of an on-board recorder, data can only be acquired where a ground station is within range. Historically, the calibration of the TM reflective bands has used an onboard calibration system with multiple lamps. The calibration procedure for the TM reflective bands was updated in 2003 based on the best estimate at the time, using only one of the three lamps and a cross-calibration with Landsat-7 ETM+. Since then, the Saharan desert sites have been used to validate this calibration model. Problems were found with the lamp based model of up to 13% in band 1. Using the Saharan data, a new model was developed and implemented in the US processing system in April 2007. The TM thermal band was found to have a calibration offset error of 0.092 W/m~2 sr μm (0.68K at 300K) based on vicarious calibration data between 1999 and 2006. The offset error was corrected in the US processing system on April 2007 for all data acquired since April 1999.
机译:Landsat-7 ETM +于1999年4月推出,继续在全球范围内获取数据。 2003年发生故障的扫描线校正器影响了地面覆盖范围,2007年4月最近转换为“保险杠模式”操作降低了数据的内部几何精度,但辐射度未受影响。对于反射带,三个板载校准器中最好的一个是全孔太阳能校准器,它表明ETM +的变化缓慢,但这被认为是由于面板上的污染而不是仪器退化所致。自2003年以来,内部校准器灯2尽管在整个任务中并未得到定期使用,但它表示的变化比FASC自2003年以来要小。灯2指示的变化仅在波段1上具有统计意义,每年约0.3%,并且可能是灯,而不是仪器退化。对撒哈拉沙漠和阿拉伯沙漠中的沙漠目标进行的定期观测表明,尽管不确定性较大并且不能排除灯2指示的微小变化,但ETM +反射带响应没有变化。热带继续保持稳定并经过良好校准因为2000年后期纠正了偏移误差。 Landsat-5 TM于1984年发射,也继续获取全球数据。尽管没有车载记录仪的好处,但只能在地面站处于范围内的地方获取数据。从历史上看,TM反射带的校准使用带有多个灯的板载校准系统。 TM反射带的校准程序在2003年根据当时的最佳估计进行了更新,仅使用了三个灯中的一个,并使用Landsat-7 ETM +进行了交叉校准。从那时起,撒哈拉沙漠站点就被用来验证该校准模型。发现在波段1中高达13%的基于灯的模型存在问题。使用Saharan数据,于2007年4月在美国处理系统中开发并实施了一个新模型。发现TM热波段具有校准偏移误差。基于1999年到2006年间的替代校准数据,得出0.092 W / m〜2 srμm(0.68K,300K时)。针对美国1999年4月以来获得的所有数据,偏移处理误差于2007年4月在美国处理系统中进行了校正。

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