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Real-time UV index retrieval in Europe using Earth observation-based techniques: system description and quality assessment

机译:使用地球观测技术的欧洲实时UV指数检索:系统描述和质量评估

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This study introduces an Earth observation (EO)-based system which is capable of operationally estimating and continuously monitoring the ultraviolet index (UVI) in Europe. UVIOS (i.e., UV-Index Operating System) exploits a synergy of radiative transfer models with high-performance computing and EO data from satellites (Meteosat Second Generation and Meteorological Operational Satellite-B) and retrieval processes (Tropospheric Emission Monitoring Internet Service, Copernicus Atmosphere Monitoring Service and the Global Land Service). It provides a near-real-time nowcasting and short-term forecasting service for UV radiation over Europe. The main atmospheric inputs for the UVI simulations include ozone, clouds and aerosols, while the impacts of ground elevation and surface albedo are also taken into account. The UVIOS output is the UVI at high spatial and temporal resolution (5?km and 15?min, respectively) for Europe (i.e., 1.5?million pixels) in real time. The UVI is empirically related to biologically important UV dose rates, and the reliability of this EO-based solution was verified against ground-based measurements from 17 stations across Europe. Stations are equipped with spectral, broadband or multi-filter instruments and cover a range of topographic and atmospheric conditions. A period of over 1?year of forecasted 15?min retrievals under all-sky conditions was compared with the ground-based measurements. UVIOS forecasts were within ± 0.5 of the measured UVI for at least 70?% of the data compared at all stations. For clear-sky conditions the agreement was better than 0.5 UVI for 80?% of the data. A sensitivity analysis of EO inputs and UVIOS outputs was performed in order to quantify the level of uncertainty in the derived products and to identify the covariance between the accuracy of the output and the spatial and temporal resolution and the quality of the inputs. Overall, UVIOS slightly overestimated the UVI due to observational uncertainties in inputs of cloud and aerosol. This service will hopefully contribute to EO capabilities and will assist the provision of operational early warning systems that will help raise awareness among European Union citizens of the health implications of high UVI doses.
机译:本研究介绍了基于地球观测(EO)的系统,其能够在欧洲的紫外线(UVI)进行操作估计和连续监测紫外线指数(UVI)。 UVIOS(即紫外线索引操作系统)利用来自卫星的高性能计算和EO数据的辐射转移模型的协同作用(Meteosat第二代和气象运营卫星-B)和检索过程(对流层排放监测互联网服务,哥白尼大气监测服务和全球土地服务)。它为欧洲紫外线辐射提供了近乎实时的近期播放和短期预测服务。 UVI模拟的主要大气输入包括臭氧,云和气溶胶,而接地高程和表面反照的影响也被考虑在内。 UVIOS输出是欧洲(即1.5百万像素)的高空间和时间分辨率(5 km和15?min)实时的UVI。 UVI经验与生物学上重要的紫外剂量率相关,并且验证了这种基于EO的溶液的可靠性,从欧洲的17个站进行了基于基于地面的测量。站点配有光谱,宽带或多滤器仪器,覆盖一系列地形和大气条件。与基于地面的测量相比,在全天候条件下的预测15次预测的一年中的一个超过1? UVIO预测在所有站点的测量UVI的测量UVI中的±0.5内均为至少70?%。对于清晰的天空条件,协议优于0.5 uvi,80?%的数据。执行EO输入和UVIO输出的灵敏度分析,以便量化衍生产品中的不确定性水平,并识别输出精度与空间和时间分辨率的协方差和输入的质量。总体而言,由于云和气溶胶输入的观察不确定性,UVIOS略微高估了UVI。该服务有望为EO能力做出贡献,并有助于提供运营预警系统,这将有助于提高高UVI剂量的健康影响的欧盟公民的认识。

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