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Trade study of substituting VIIRS M10 with aggregated I3 to enable addition of a water vapor channel

机译:用聚集I3代替VIIRS M10的贸易研究,使添加水蒸气通道

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The U.S. National Weather Service currently assimilates into its numerical weather prediction models satellite observations from the aging MODIS instruments that track polar winds from motion of both clouds and atmospheric moisture. Next generation weather observations are provided by VIIRS instruments, but VIIRS lacks a water vapor channel at 6.7 μm, allowing for only cloud-tracking of winds. An addition of the 6.7 μrn channel to future VIIRS instruments has been proposed. The additional channel could replace a 750-m channel at 1.6 μm (M10) that shares spectral response characteristics with a 375-m channel (13). M10 data would then be synthesized by the 2-by-2 aggregation of I3 pixels. Radiometric response of such a synthesized channel is very similar to the actual one, although some differences exist. In this study, SNR (signal-to-noise ratio) for the M10 data simulated by the aggregation of the I3 pixels was compared with SNR for the actual M10 data. SNR for the simulated M10 was found to be always lower than SNR for the actual M10. This result contrasts with results of an analogous SNR comparison for bands I2 and M7 that share the same spectral response at 865 nm. Aggregated I2 data have SNR comparable to actual M7 data measured with the low gain, although lower than high-gain M7. The main reason for the different SNR behavior may be the use of microlenses with the I3 and M10 detectors, but not with the I2 and M7 ones.
机译:美国国家天气服务目前吸收到其数控天气预报模型,从衰老的MODIS仪器卫星观测,从云和大气水分的运动跟踪极性风。下一代天气观测由VIIRS仪器提供,但VIIR缺乏6.7μm的水蒸汽通道,只允许云跟踪风。提出了添加6.7μ​​rn频道到未来的VIIR仪器。附加通道可以替换为1.6μm(M10)的750米通道,其共享具有375米通道(13)的频谱响应特性。然后将通过I3像素的2×2聚合来合成M10数据。这种合成通道的辐射响应与实际响应非常相似,尽管存在一些差异。在本研究中,通过I3像素的聚合模拟的M10数据的SNR(信噪比)与实际M10数据的SNR进行了比较。发现模拟M10的SNR总是低于实际M10的SNR。该结果与在865nm处共享相同光谱响应的频带I2和M7的类似SNR比较的结果形成对比。聚合I2数据具有与具有低增益测量的实际M7数据相当的SNR,尽管低于高增益M7。不同SNR行为的主要原因可能是使用I3和M10探测器的微透镜,但不使用I2和M7。

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