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Evaluation of shortwave infrared atmospheric correction for ocean color remote sensing of Chesapeake Bay

机译:切萨皮克湾海洋颜色遥感的短波红外大气校正技术评估

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The NASA Moderate Resolution Imaging Spectroradiometer onboard the Aqua platform (MODIS-Aqua) provides a viable data stream for operational water quality monitoring of Chesapeake Bay. Marine geophysical products from MODIS-Aqua depend on the efficacy of the atmospheric correction process, which can be problematic in coastal environments. The operational atmospheric correction algorithm for MODIS-Aqua requires an assumption of negligible near-infrared water-leaving radiance, nL_w(NIR). This assumption progressively degrades with increasing turbidity and, as such, methods exist to account for non-negligible nL_w(NIR) within the atmospheric correction process or to use alternate radiometric bands where the assumption is satisfied, such as those positioned within shortwave infrared (SWIR) region of the spectrum. We evaluated a decade-long time-series of nL_w(λ) from MODIS-Aqua in Chesapeake Bay derived using NIR and SWIR bands for atmospheric correction. Low signal-to-noise ratios (SNR) for the SWIR bands of MODIS-Aqua added noise errors to the derived radiances, which produced broad, flat frequency distributions of nL_w(λ) relative to those produced using the NIR bands. The SWIR approach produced an increased number of negative nL_w(λ) and decreased sample size relative to the NIR approach. Revised vicarious calibration and regional tuning of the scheme to switch between the NIR and SWIR approaches may improve retrievals in Chesapeake Bay, however, poor SNR values for the MODIS-Aqua SWIR bands remain the primary deficiency of the SWIR-based atmospheric correction approach.
机译:Aqua平台上的NASA中分辨率成像光谱仪(MODIS-Aqua)为切萨皮克湾的运行水质监测提供了可行的数据流。来自MODIS-Aqua的海洋地球物理产品取决于大气校正过程的功效,这在沿海环境中可能会出现问题。 MODIS-Aqua的可操作大气校正算法需要一个可忽略的近红外离水辐射率nL_w(NIR)的假设。该假设随着浊度的增加而逐渐降低,因此,存在解决大气校正过程中不可忽略的nL_w(NIR)或使用满足假设的替代辐射测量波段的方法,例如位于短波红外(SWIR)中的波段)的频谱区域。我们评估了来自切萨皮克湾MODIS-Aqua的nL_w(λ)长达十年的时间序列,该序列使用NIR和SWIR波段进行了大气校正。 MODIS-Aqua的SWIR频段的低信噪比(SNR)将噪声误差添加到导出的辐射中,相对于使用NIR频段产生的噪声分布,这产生了宽而平坦的nL_w(λ)频率分布。相对于NIR方法,SWIR方法产生的负nL_w(λ)数量增加,并且样本量减小。经修订的替代校准和对方案进行区域调整以在NIR和SWIR方法之间切换可能会改善切萨皮克湾的检索,但是,MODIS-Aqua SWIR波段的SNR值差仍然是基于SWIR的大气校正方法的主要缺陷。

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