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On-orbit characterization of RVS for MODIS thermal emissive bands

机译:用于MODIS热发射带的RV的轨道表征

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Response versus scan angle (RVS) is a key calibration parameter for remote sensing radiometers that make observations using a scanning optical system, such as a doubled sided scan mirror (MODIS and GLI) or a rotating telescope (SeaWiFS and VIIRS). This is because the calibration is typically performed at a fixed viewing angle whereas the Earth scene observations are made over a range of viewing angles and the system's response is a function of the scan angle. The NASA EOS Terra MODIS has been in operation for more than four years since its launch in December 1999. It has 36 spectral bands covering wavelengths from visible (VIS) to long-wave infrared (LWIR). It is a cross-track scanning radiometer with a two-sided paddle wheel scan mirror, making observations over a wide field of view (FOV) of ±5° from nadir thereby enabling frequent global coverage. Due to pre-launch measurement limitations, the Terra MODIS thermal emissive bands (TEB) RVS characterization did not produce valid data sets that could be used to derive a reliable system level RVS. Because of this, a RVS was developed for use at launch and subsequent efforts have been made to characterize the RVS using on-orbit observations. This paper describes the Terra MODIS on-orbit characterization of TEB RVS, including the data from scanning the instrument抯 closed nadir aperture door (CNAD) and the use of Earth view data collected during spacecraft deep space maneuvers (DSM). Comparisons of pre-launch analysis and early on-orbit measurements are also provided. Noticeable improvements have been made for several thermal emissive bands for observations at large angles of incidence (AOI). Using the correct RVS improves the image quality and the radiometric calibration accuracy. For bands 34-36, an adjustment of as much as 0.5-1.5K can be made at the end of scan (worst case) for mirror side 2. The impacts at smaller AOI and from mirror side 1 are much smaller. Based on RVS comparison studies and science test results, the on-orbit derived DSM RVS has been chosen for the ongoing L1B data processing and future reprocessing.
机译:响应与扫描角度(RVS)是用于遥感辐射计的键校准参数,用于使用扫描光学系统进行观察,例如双面扫描镜(MODIS和GLI)或旋转望远镜(SEAWIFS和VIIR)。这是因为通常以固定的视角执行校准,而在一系列视角并且系统的响应是扫描角的函数之上,地球场景观察是校准。 NASA EOS Terra Modis于1999年12月推出以来一直在运行四年以上。它具有36个光谱带,覆盖从可见光(VI)到长波红外(LWIR)的波长。它是一个具有双面桨叶扫描镜的交叉扫描辐射计,从Nadir的宽视野(FOV)的观察开始,从而能够频繁地覆盖。由于预启动测量限制,Terra Modis热发射频带(TEB)RVS表征未产生可用于推导可靠的系统级RV的有效数据集。因此,开发了RVS以在发射中使用,并且已经使用随后的努力来使用轨道观测来表征RV。本文介绍了TEB RVS的Terra Modis表征TEB RV,包括扫描仪器的数据抯封闭的Nadir孔径门(CNAD),以及在航天器深度空间机动(DSM)期间收集的地球视图数据的使用。还提供了预发射分析和早期轨道测量的比较。对于几种热发射带进行了明显的改进,用于在大角度(AOI)中的观察结果。使用正确的RVS提高了图像质量和辐射校准精度。对于带34-36的带,可以在镜面2的扫描结束时进行多达0.5-1.5k的调节2.较小AOI和镜面1处的冲击得多。基于RVS比较研究和科学测试结果,已为正在进行的L1B数据处理和未来后处理选择On-On-On-ortived DSM RV。

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