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A global satellite environmental data record derived from AMSR-E and AMSR2 microwave Earth observations

机译:来自AMSR-E和AMSR2微波地球观测的全球卫星环境数据记录

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Spaceborne microwave remote sensing is widely used to monitor global environmental changes for understanding hydrological, ecological, and climate processes. A new global land parameter data record (LPDR) was generated using similar calibrated, multifrequency brightness temperature (Tb) retrievals from the Advanced Microwave Scanning Radiometer for EOS (AMSR-E) and the Advanced Microwave Scanning Radiometer 2 (AMSR2). The resulting LPDR provides a long-term (June 2002–December 2015) global record of key environmental observations at a 25?km grid cell resolution, including surface fractional open water (FW) cover, atmosphere precipitable water vapor (PWV), daily maximum and minimum surface air temperatures (Tmx and Tmn), vegetation optical depth (VOD), and surface volumetric soil moisture (VSM). Global mapping of the land parameter climatology means and seasonal variability over the full-year records from AMSR-E (2003–2010) and AMSR2 (2013–2015) observation periods is consistent with characteristic global climate and vegetation patterns. Quantitative comparisons with independent observations indicated favorable LPDR performance for FW (R?≥?0.75; RMSE??≤??0.06), PWV (R?≥?0.91; RMSE??≤??4.94?mm), Tmx and Tmn (R?≥?0.90; RMSE??≤??3.48?°C), and VSM (0.63?≤?R?≤?0.84; bias-corrected RMSE??≤??0.06?cm3?cm?3). The LPDR-derived global VOD record is also proportional to satellite-observed NDVI (GIMMS3g) seasonality (R?≥?0.88) due to the synergy between canopy biomass structure and photosynthetic greenness. Statistical analysis shows overall LPDR consistency but with small biases between AMSR-E and AMSR2 retrievals that should be considered when evaluating long-term environmental trends. The resulting LPDR and potential updates from continuing AMSR2 operations provide for effective global monitoring of environmental parameters related to vegetation activity, terrestrial water storage, and mobility and are suitable for climate and ecosystem studies. The LPDR dataset is publicly available at http://files.ntsg.umt.edu/data/LPDR_v2/.<
机译:星载微波遥感广泛用于监测全球环境变化,以了解水文,生态和气候过程。使用从EOS的高级微波扫描辐射仪(AMSR-E)和高级的微波扫描辐射仪2(AMSR2)获得的类似的经过校准的多频亮度温度(Tb)检索,生成了新的全球陆地参数数据记录(LPDR)。最终的LPDR在25?km的网格单元分辨率下提供了关键环境观测的长期(2002年6月)全球记录,包括地表部分开放水(FW)覆盖,大气可沉淀水蒸气(PWV),每日最大值最低地表气温(Tmx和Tmn),植被光学深度(VOD)和地表土壤水分(VSM)。在AMSR-E(2003-2010年)和AMSR2(2013-2015年)观测期的全年记录中,土地参数气候学手段和季节变化的全球测绘与特征性的全球气候和植被格局一致。与独立观测结果的定量比较表明,FW(R≥≥0.75;RMSE≥≤0.06;RSE≥≥0.91;RMSE≤≤4.94mm),Tmx和Tmn( R 1≥0.90; RMSE≤≤3.48℃;和VSM(0.63≤≤R≤0.84;经偏置校正的RMSE≤0.06Ω·cm 3≤cm-3)。由于冠层生物量结构和光合绿色之间的协同作用,源自LPDR的全球VOD记录也与卫星观测的NDVI(GIMMS3g)季节性成正比(R≥≥0.88)。统计分析显示总体LPDR一致性,但在评估长期环境趋势时应考虑AMSR-E和AMSR2取回之间的较小偏差。由此产生的LPDR和AMSR2持续运行带来的潜在更新可对与植被活动,陆地水存储和流动性相关的环境参数进行有效的全球监控,并且适合进行气候和生态系统研究。 LPDR数据集可从http://files.ntsg.umt.edu/data/LPDR_v2/。公开获得。

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