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THE ABSOLUTE RADIOMETRIC CALIBRATION OF SPACE-BASED SENSORS.

机译:基于空间的传感器的绝对放射性校准。

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摘要

The need for absolute radiometric calibration of space-based sensors will continue to increase as new generations of space sensors are developed. A reflectance-based in-flight calibration procedure is used to determine the radiance reaching the entrance pupil of the sensor. This procedure uses ground-based measurements coupled with a radiative transfer code to characterize the effects the atmosphere has on the signal reaching the sensor. The computed radiance is compared to the digital count output of the sensor associated with the image of a test site. This provides an update to the preflight calibration of the system and a check on the on-board internal calibrator.; This calibration procedure was used to perform a series of five calibrations of the Landsat-5 Thematic Mapper (TM). For the 12 measurements made in TM bands 1-3, the RMS variation from the mean as a percentage of the mean is (+OR-) 1.9%, and for measurements in the IR, TM bands 4,5, and 7, the value is (+OR-) 3.4%. The RMS variation for all 23 measurements is (+OR-) 2.8%.; The absolute calibration techniques were put to another test with a series of three calibration of the SPOT-1 High Resolution Visible, (HRV), sensors. The ratio, HRV-2/HRV-1, of absolute calibration coefficients compared very well with ratios of histogrammed data obtained when the cameras simultaneously imaged the same ground site. Bands PA, B1 and B3 agreed to within 3%, while band B2 showed a 7% difference.; The procedure for performing a satellite calibration was then used to demonstrate how a calibrated satellite sensor can be used to quantitatively evaluate surface reflectance over a wide range of surface features. Predicted reflectance factors were compared to values obtained from aircraft-based radiometer data. This procedure was applied on four dates with two different surface conditions per date. A strong correlation, R('2) = .996, was shown between reflectance values determined from satellite imagery and low-flying aircraft data. Of the 32 predicted reflectance values only six had a difference greater than 0.01. A mean difference of .0007 was obtained for the 32 cases. In addition, a procedure had to be developed to obtain uncorrected digital counts from processed satellite imagery.
机译:随着新一代空间传感器的发展,对空基传感器进行绝对辐射定标的需求将继续增加。基于反射的飞行中校准过程用于确定到达传感器入射光瞳的辐射。此过程使用基于地面的测量值加上辐射转移代码来表征大气对到达传感器的信号的影响。将计算出的辐射度与与测试部位图像关联的传感器的数字计数输出进行比较。这样就可以更新系统的飞行前校准,并可以检查机载内部校准器。该校准程序用于对Landsat-5 Thematic Mapper(TM)进行五次校准​​。对于在TM频段1-3中进行的12次测量,相对于平均值的RMS均值的平均值为(+ OR-)1.9%,对于IR,TM频段4,5和7中的测量,值为(+ OR-)3.4%。所有23个测量值的RMS变化为(+ OR-)2.8%。绝对校准技术通过SPOT-1高分辨率可见光(HRV)传感器的三个校准系列进行了另一项测试。绝对校准系数的比率HRV-2 / HRV-1与当相机同时对同一地面进行成像时获得的直方图数据的比率非常好。频段PA,B1和B3同意相差3%以内,而频段B2则相差7%。然后使用执行卫星校准的程序来演示如何使用校准后的卫星传感器来定量评估各种表面特征上的表面反射率。将预测的反射率与从基于飞机的辐射计数据获得的值进行比较。该程序应用于四个日期,每个日期有两个不同的表面条件。从卫星图像确定的反射率值与低空飞行的飞机数据之间显示出很强的相关性R('2)= .996。在32个预测的反射率值中,只有6个的差异大于0.01。 32例的平均差异为.0007。另外,必须开发一种程序来从处理后的卫星图像中获得未校正的数字计数。

著录项

  • 作者

    HOLM, RONALD GENE.;

  • 作者单位

    The University of Arizona.;

  • 授予单位 The University of Arizona.;
  • 学科 Physics Optics.
  • 学位 Ph.D.
  • 年度 1987
  • 页码 191 p.
  • 总页数 191
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 光学;
  • 关键词

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