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Characterization of MODIS SD screen vignetting function using observations from spacecraft yaw maneuvers

机译:使用宇宙飞船偏航机的观测的MODIS SD屏幕渐晕功能的表征

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The MODIS reflective solar bands (RSB) include both the low-gain and high-gain spectral bands depending on their specific applications. MODIS RSBs are calibrated on-orbit by an on-board solar diffuser. In order to avoid detector response saturation when calibrating the high-gain bands, an optional attenuation screen, made of a metal plate with pinhole arrays, is placed in front of the SD panel. Since no pre-launch system-level characterization was made for the SD screen (SDS) vignetting function (VF), a series of spacecraft (Terra and Aqua) yaw maneuvers were carried out to perform on-orbit characterization of the VF. Assuming that the low-gain bands and the high-gain bands have the same VF, the current VF was derived from yaw observations using the MODIS low-gain bands through taking the ratio of their SD responses with and without the SDS in place. In this study, we attempt to characterize the SDS VF directly using detector responses of individual high-gain bands with the SDS in place only. The corresponding SD responses without the SDS, not available from measurements due to saturation, are calculated using detector gains, the SD bidirectional reflectance factor (BRF), and the view geometry that matches the yaw observations with the SDS in place. Results and discussions are focused on the band dependent and detector dependent features of the SDS VF, and their potential impact on the RSB calibration.
机译:MODIS反射太阳能带(RSB)包括低增益和高增益光谱带,这取决于其特定应用。 MODIS RSB通过板载太阳能漫射器校准轨道。为了避免在校准高增益带时校准检测器响应饱和度,将由带针孔阵列的金属板制成的可选衰减屏幕放置在SD面板的前面。由于没有对SD屏幕(SDS)渐晕功能(VF)进行预发射系统级别表征,因此进行了一系列航天器(Terra和Aqua)横摆机组,以执行VF的轨道表征。假设低增益频带和高增益频带具有相同的VF,通过使用MODIS低增益频带从横摆率观测到使用它们的SD响应与SDS到位的比率来导出电流VF。在这项研究中,我们尝试使用SDS响应单个高增益带与SDS的位置直接表征SDS VF。使用探测器增益,SD双向反射率因子(BRF)和视图几何形状计算没有SDS的相应SD响应,不可于由饱和度引起的测量值。与SDS与SDS与SDS匹配。结果和讨论集中在SDS VF的带依赖性和探测器相关特征上,以及它们对RSB校准的潜在影响。

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