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An Evaluation of the GOES-R ABI Aerosol Retrieval Algorithm

机译:对GoS-R Abi Aerosol检索算法的评估

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A multi-channel aerosol retrieval algorithm has been developed for the Advanced Baseline Imager (ABI) onboard the next generation US Geostationary Operational Environmental Satellite (GOES-R series). Testing and evaluation of this algorithm is carried out with model simulated and satellite-observed multi-spectral reflectance. Sensitivity tests with synthetic reflectance show that ABI retrieved aerosol optical depth at 0.55??m (??0.55??mm) is expected to change by 5% and 9% (14% and 24%) on average over water (land) corresponding to 3% and 5% uncertainties in calibration. Model identification is expected to have a 50%-60% success rate for a 3%-5% calibration uncertainty. Performance of ABI aerosol retrieval is evaluated with MODIS observations. Compared with AERONET ground measurements, on average, retrieved ??0.55??m differs from AERONET measurements by -0.02?±0.05 over water and 0.05?±0.17 over land. The effect of sensor polarization sensitivity on ABI aerosol retrievals is also estimated as a bias of -0.01 over water and -0.05 over land for the retrieved ??0.55??m.
机译:已经为下一代美国地球静止运营环境卫星(GUSE-R系列)开发了一种多通道的气溶胶检索算法。通过模拟和卫星观察的多光谱反射率进行该算法的测试和评估。具有合成反射率的敏感性测试表明,预计预计在0.55Ω米(ω0.55Ωm)下检索气溶胶光学深度5%和9%(14%和24%)平均水平(土地)对应于校准的3%和5%的不确定性。预计模型识别有50%-60%的成功率为3%-5%的校准不确定性。 Abi Aerosol检索的性能进行了莫迪斯观察评价。与AeroNet地面测量相比,平均而言,检索到的?? 0.55 ?? M 在水中通过-0.02℃的AERONET测量的不同之处在于覆盖水和0.05?±0.17。传感器偏振敏感性对ABI气溶胶检索的影响也估计在水上的-0.01偏差,而检索到的焊盘达到-0.05°,用于检索的陆地,_ 0.55?m

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