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Site Characterization for Calibration of Radiometric Sensors using Vicarious Method

机译:使用替代方法对辐射传感器校准的现场表征

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Radiometric performances of earth observation satellite/sensors vary from ground pre-launch calibration campaign to post launch period extended to lifetime of the satellite due to launching vibrations. Therefore calibration is carried out worldwide through various methods throughout satellite lifetime. In India Indian Space Research Organization (ISRO) calibrates the sensor of Resourcesat-2 satellite by vicarious method. One of these vicarious calibration methods is the reflectance-based approach that is applied in this study for radiometric calibration of sensors on-board Resouresat-2 satellite. The results of ground-based measurement of atmospheric conditions and surface reflectance are made at Bap, Rajasthan Calibration/Validation (Cal/Val) site. Cal/Val observations at site were carried out with hyper-spectral Spectroradiometer covering spectral range of 350nm-2500nm for radiometric characterization of the site. The Sunphotometer/Ozonometer for measuring the atmospheric parameters has also been used. The calibrated radiance is converted to absolute at-sensor spectral reflectance and Top-Of-Atmosphere (TOA) radiance. TOA radiance was computed using radiative transfer model 'Second simulation of the satellite signal in the solar spectrum' (6S), which can accurately simulate the problems introduced by the presence of the atmosphere along the path from Sun to target (surface) to Sensor. The methodology for band averaged reflectance retrieval and spectral reflectance fitting process are described. Then the spectral reflectance and atmospheric parameters are put into 6S code to predict TOA radiance which compare with Resourcesat-2 radiance. Spectral signature and its reflectance ratio indicate the uniformity of the site. Thus the study proves that the selected site is suitable for vicarious calibration of sensor of Resourcesat-2. Further the study demonstrates the procedure for similar exercise for site selection for Cal/Val analysis of other satellite over India region.
机译:对地观测卫星的辐射性能/传感器从地面发射前校准运动,以交发射周期延伸到卫星的寿命由于发射的振动而变化。因此,校准是通过在整个卫星寿命的各种方法进行了世界各地。在印度的印度空间研究组织(ISRO)校准资源卫星2卫星的通过替代方法的传感器。其中一个替代校准方法是在本研究应用于传感器的辐射校正板载Resouresat-2卫星的基于反射率的方法。的大气条件和表面反射率的基于地面的测量结果是在BAP,拉贾斯坦邦校准/验证(卡/ VAL)现场制作。在现场校准/缬氨酸观察结果与覆盖在350nm-2500nm的光谱范围为网站的辐射特性高光谱光谱仪进行。该光度计/ Ozonometer用于测量大气参数也被使用。校准辐射被转换为绝对在传感器的光谱反射率和顶级的大气(TOA)辐射。 TOA辐射用辐射传输模式“的卫星信号的第二模拟太阳光谱”(6S),它可以精确地模拟由气氛的存在沿着从太阳路径到目标(表面)到传感器带来的问题来计算。用于频带的方法的平均反射率的检索和光谱反射率拟合过程进行说明。然后,光谱反射率和大气参数放入6S代码预测TOA辐射,其与资源卫星2辐射进行比较。光谱特征和它的反射率表明该网站的均匀性。因此,该研究证明了所选择的位点是适合于资源卫星2的传感器的替代定标。进一步的研究表明类似的演习地点选择其他卫星在印度地区的加州/瓦尔分析的过程。

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