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Tracking long-term stability of Aqua MODIS and AIRS at different scan angles

机译:在不同的扫描角度跟踪Aqua MODIS和AIRS的长期稳定性

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The near-simultaneous observations from Moderate Resolution Imaging Spectroradiometer (MODIS) and Atmospheric Infrared Sounder (AIRS) sensors on-board the Aqua spacecraft provide a good opportunity to track the relative calibration stability of both sensors over their entire mission. The AIRS is a hyper-spectral sensor with a spectral resolution of around 5 nm that covers the spectral range of most MODIS thermal emissive bands (TEB) except for a few small gaps. The simulated MODIS radiances can be derived by convolving AIRS spectral measurements with MODIS relative spectral response functions. Using spatially collocated pixels, the differences between MODIS observed and AIRS simulated brightness temperatures are computed for most MODIS TEB at various scan angles within ±49.5 degree of the nadir position. Two regions of different scene temperatures are selected: the central Atlantic Ocean and the Dome C at Antarctica. The trending of the MODIS - AIRS brightness temperature differences (BTD) is derived for years 2003-2008. Results show that the magnitudes of the BTD are spectral band dependent. The values of BTD are generally less than ± 0.5K for most TEB with a few exceptions. For band 27, the BTD are about -1.2 K over the Dome Concordia and about -3.0 K over the northern Atlantic Ocean. Bands 35 and 36 have BTD about +1.0 K over the Atlantic Ocean. The trending results show that the BTD changes over a six-year period are less than 0.3 K for all calculable MODIS bands, and are slightly larger at large scan angles than those near nadir. Our results are consistent with previous studies.
机译:Aqua航天器上的中等分辨率成像光谱仪(MODIS)和大气红外测深仪(AIRS)传感器几乎同时进行观测,这为跟踪两个传感器在整个飞行过程中的相对校准稳定性提供了很好的机会。 AIRS是一种高光谱传感器,具有大约5 nm的光谱分辨率,除了少数几个小间隙外,它覆盖了大多数MODIS热发射带(TEB)的光谱范围。可以通过将AIRS光谱测量结果与MODIS相对光谱响应函数进行卷积来得出模拟的MODIS辐射度。使用空间上并置的像素,可以在天底位置的±49.5度以内的各种扫描角度为大多数MODIS TEB计算MODIS观测到的和AIRS模拟的亮度温度之间的差异。选择了两个不同场景温度的区域:大西洋中部和南极洲的DomeC。 MODIS-AIRS亮度温差(BTD)的趋势可追溯到2003-2008年。结果表明,BTD的大小与频谱带有关。对于大多数TEB,BTD的值通常小于±0.5K,只有少数例外。对于频段27,BTC在Dome Concordia上方约为-1.2 K,在北大西洋上方约为-3.0K。频带35和36在大西洋上空的BTD约为+1.0K。趋势结果表明,对于所有可计算的MODIS波段,六年期间BTD的变化均小于0.3 K,并且在大扫描角度下比在最低点处稍大。我们的结果与以前的研究一致。

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