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Multiyear On-Orbit Calibration and Performance of Terra MODIS Reflective Solar Bands

机译:Terra MODIS反射太阳波段的多年在轨校准和性能

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Terra Moderate Resolution Imaging Spectroradiometer (MODIS) has made continuous global observations for more than six years since its launch in December 1999. MODIS has 36 spectral bands: 20 reflective solar bands (RSBs) with wavelengths from 0.41-2.2 mum and 16 thermal emissive bands with wavelengths from 3.7-14.4 mum. It is a cross-track scanning radiometer that collects data at three nadir spatial resolutions: 0.25 km (2 bands), 0.5 km (5 bands), and 1 km (29 bands). An onboard solar diffuser (SD) and an SD stability monitor (SDSM) are used biweekly for RSB on-orbit radiometric calibration. Another onboard calibrator (OBC), a spectroradiometric calibration assembly, is used periodically to evaluate and monitor RSB spatial and spectral performance. In addition to measurements made using OBCs, lunar observations at nearly identical phase angles are used to track RSB calibration stability. This paper provides an overview of MODIS RSB on-orbit calibration algorithms and operational activities. It discusses sensor characteristics that could impact RSB calibration accuracy and data product quality, including degradation of the SD bidirectional reflectance factor (BRF), degradation of the scan mirror reflectance in the visible spectral region, and changes in operational configuration. The Terra MODIS OBCs have performed well in monitoring SD degradation and tracking changes in RSB response. Band 8 (0.41 mum) has experienced the largest response decrease with an approximate annual rate of 4.5% (mirror side 1). Band 9 (0.44 mum) has an annual response decrease of about 2.3% (mirror side 1). For most RSB bands with wavelengths greater than 0.5 mum, the annual response changes are generally less than 1.0%. Results from the SDSM on-orbit observations show that the SD BRF also has a similar wavelength-dependent degradation, with the largest degradation appearing at the shortest wavelengths. Among the 330 RSB detectors, there are no inoperable detectors, and only a few noisy d-etectors have appeared postlaunch
机译:自1999年12月推出以来,Terra中分辨率成像光谱仪(MODIS)进行了连续六年以上的全球观测。MODIS具有36个光谱带:20个反射太阳光谱带(RSB),波长范围从0.41-2.2微米,以及16个热发射光谱带波长为3.7-14.4毫米。它是一种跨轨扫描辐射计,以三种最低的空间分辨率收集数据:0.25 km(2个波段),0.5 km(5个波段)和1 km(29个波段)。每两周使用一次板载太阳能扩散器(SD)和SD稳定性监控器(SDSM)进行RSB在轨辐射校准。定期使用另一个车载校准器(OBC)(光谱辐射校准组件)来评估和监视RSB的空间和光谱性能。除了使用OBC进行的测量外,在几乎相同的相位角处进行的月球观测也可用于跟踪RSB校准的稳定性。本文概述了MODIS RSB的在轨校准算法和操作活动。它讨论了可能影响RSB校准精度和数据产品质量的传感器特性,包括SD双向反射系数(BRF)的下降,可见光谱区域中扫描镜反射率的下降以及操作配置的变化。 Terra MODIS OBC在监视SD降级和跟踪RSB响应变化方面表现良好。乐队8(0.41妈妈)经历了最大的响应下降,大约每年4.5%(镜面1)。乐队9(0.44妈妈)的年度响应减少了约2.3%(镜面1)。对于大多数波长大于0.5μm的RSB波段,年响应变化通常小于1.0%。 SDSM在轨观测的结果表明,SD BRF也具有类似的波长依赖性衰减,其中最大的衰减出现在最短的波长上。在330个RSB探测器中,没有无法使用的探测器,并且发射后仅出现了一些嘈杂的d探测器。

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