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L5 TM Radiometric Recalibration Procedure Using the Internal Calibration Trends from the NLAPS Trending Database

机译:使用NLAPS趋势数据库中的内部校准趋势进行L5 TM辐射度重新校准过程

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摘要

From the Landsat program's inception in 1972 to the present, the earth science user community has benefited from a historical record of remotely sensed data. The multispectral data from the Landsat 5 (L5) Thematic Mapper (TM) sensor provide the backbone for this extensive archive. Historically, the radiometric calibration procedure for this imagery used the instrument's response to the Internal Calibrator (IC) on a scene-by-scene basis to determine the gain and offset for each detector. The IC system degraded with time causing radiometric calibration errors up to 20 percent. In May 2003 the National Landsat Archive Production System (NLAPS) was updated to use a gain model rather than the scene acquisition specific IC gains to calibrate TM data processed in the United States. Further modification of the gain model was performed in 2007. L5 TM data that were processed using IC prior to the calibration update do not benefit from the recent calibration revisions. A procedure has been developed to give users the ability to recalibrate their existing Level-1 products. The best recalibration results are obtained if the work order report that was originally included in the standard data product delivery is available. However, many users may not have the original work order report. In such cases, the IC gain look-up table that was generated using the radiometric gain trends recorded in the NLAPS database can be used for recalibration. This paper discusses the procedure to recalibrate L5 TM data when the work order report originally used in processing is not available. A companion paper discusses the generation of the NLAPS IC gain and bias look-up tables required to perform the recalibration.
机译:从1972年的Landsat计划创立到现在,地球科学用户社区受益于遥感数据的历史记录。来自Landsat 5(L5)主题映射器(TM)传感器的多光谱数据为这一广泛的存档提供了基础。从历史上看,此图像的辐射校准程序使用仪器对内部校准器(IC)的响应逐个场景地确定每个探测器的增益和偏移。随着时间的流逝,IC系统性能下降,导致辐射校准误差高达20%。 2003年5月,国家Landsat档案生产系统(NLAPS)进行了更新,以使用增益模型而不是现场采集特定的IC增益来校准在美国处理的TM数据。增益模型的进一步修改在2007年进行。在校准更新之前使用IC处理的L5 TM数据无法从最近的校准版本中受益。已经开发出一种程序,使用户能够重新校准其现有的Level-1产品。如果原始数据包含在标准数据产品交付中,则可获得最佳的重新校准结果。但是,许多用户可能没有原始的工作订单报告。在这种情况下,使用NLAPS数据库中记录的辐射增益趋势生成的IC增益查询表可用于重新校准。本文讨论了当最初用于处理的工单报告不可用时重新校准L5 TM数据的过程。随附的论文讨论了执行重新校准所需的NLAPS IC增益和偏置查找表的生成。

著录项

  • 来源
    《Earth observing systems XIII》|2008年|708114.1-708114.12|共12页
  • 会议地点 San Diego CA(US)
  • 作者单位

    SGT, Inc, U.S. Geological Survey (USGS) Earth Resources Observation and Science (EROS) Center, Sioux Falls, SD 57198-0001 USA;

    SGT, Inc, U.S. Geological Survey (USGS) Earth Resources Observation and Science (EROS) Center, Sioux Falls, SD 57198-0001 USA;

    NCDC Imaging, U.S. Geological Survey (USGS) Earth Resources Observation and Science (EROS) Center, Sioux Falls, SD 57198-0001 USA;

    Science Systems and Applications, Inc (SSAI) National Aeronautics and Space Administration (NASA) Goddard Space Flight Center (GSFC), Greenbelt, MD 20771, USA;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 远动化系统;
  • 关键词

    landsat; L5 TM; L7 ETM+; IC; LUT; USGS; NLAPS; gain; bias; calibration; recalibration;

    机译:陆地卫星L5 TM; L7 ETM +;我知道了; LUT; USGS; NLAPS;获得;偏压;校准;重新校准;

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