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On Orbit Measurement of Response vs. Scan Angle for the Infrared Bands on TRMM/VIRS

机译:TRMM / VIRS上红外波段响应与扫描角度的轨道测量

摘要

The Visible and Infrared Scanner on the Tropical Rainfall Measuring Mission (TRMM/VIRS) is a whiskbroom imaging radiometer with two reflected solar bands and three emissive infrared bands. All five detectors are on a single cooled focal plane. This configuration necessitated the use of a paddlewheel scan mirror to avoid the effects of focal plane rotation that arise when using a scan mirror that is inclined to its axis of rotation. System radiometric requirements led to the need for protected silver as the mirror surface. Unfortunately, the SiO(x) coatings currently used to protect silver from oxidation introduce a change in reflectance with angle of incidence (AOI). This AOI dependence results in a modulation of system level response with scan angle. Measurement of system response vs. scan angle (RVS) was not difficult for the VIRS reflected solar bands, but attaining the required accuracy for the IR bands in the laboratory was not possible without a large vacuum chamber and a considerable amount of custom designed testing apparatus. Therefore, the decision was made to conduct the measurement on-orbit. On three separate occasions, the TRMM spacecraft was rotated about its pitch axis and, after the nadir view passed over the Earth's limb, the VIRS performed several thousand scans while viewing deep space. The resulting data has been analyzed and the RVS curves generated for the three IR bands are being used in the VIRS radiometric calibration algorithm. This, to our knowledge, the first time this measurement has been made on-orbit. Similar measurements are planned for the EOS-AM and EOS-PM MODIS sensors and are being considered for several systems under development. The VIRS on-orbit results will be compared to VIRS and MODIS system level laboratory measurements, MODIS scan mirror witness sample measurements and modeled data.
机译:热带雨量测量任务(TRMM / VIRS)上的可见和红外扫描仪是一种旋转扫帚成像辐射计,具有两个反射太阳波段和三个发射红外波段。所有五个检测器均位于单个冷却焦平面上。这种配置需要使用桨轮扫描镜来避免在使用倾斜于其旋转轴的扫描镜时产生的焦平面旋转的影响。系统辐射度要求导致需要保护银作为镜面。不幸的是,当前用于保护银免受氧化的SiO(x)涂层会导致反射率随入射角(AOI)的变化。这种AOI依赖性导致系统级响应随扫描角的调制。对于VIRS反射太阳波段,测量系统响应与扫描角(RVS)并不困难,但是如果没有大型真空室和大量定制设计的测试设备,就无法在实验室中达到红外波段所需的精度。 。因此,决定进行在轨测量。在三个不同的情况下,TRMM航天器绕其俯仰轴旋转,并且在天底视图越过地球的四肢后,VIRS在观察深空时执行了数千次扫描。已对所得数据进行了分析,并且针对三个IR波段生成的RVS曲线正在VIRS辐射度校准算法中使用。据我们所知,这是首次在轨测量。计划对EOS-AM和EOS-PM MODIS传感器进行类似的测量,并且正在为一些正在开发的系统考虑类似的测量。 VIRS在轨结果将与VIRS和MODIS系统级实验室测量结果,MODIS扫描镜见证样品测量结果和建模数据进行比较。

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