Arid
DOI10.3390/rs15071819
A New Method for Hour-by-Hour Bias Adjustment of Satellite Precipitation Estimates over Mainland China
Li, Ji; Yong, Bin; Shen, Zhehui; Wu, Hao; Yang, Yi
通讯作者Yong, B
来源期刊REMOTE SENSING
EISSN2072-4292
出版年2023
卷号15期号:7
英文摘要Highly accurate near-real-time satellite precipitation estimates (SPEs) are important for hydrological forecasting and disaster warning. The near-real quantitative precipitation estimates (REGC) of the recently developed Chinese geostationary meteorological satellite Fengyun 4A (FY4A) have the advantage of high spatial and temporal resolution, but there are errors and uncertainties to some extent. In this paper, a self-adaptive ill-posed least squares scheme based on sequential processing (SISP) is proposed and practiced in mainland China to correct the real-time biases of REGC hour by hour. Specifically, the scheme adaptively acquires sample data by setting temporal and spatial windows and constructs an error-correction model based on the ill-posed least squares method from the perspectives of climate regions, topography, and rainfall intensity. The model adopts the sequential idea to update satellite precipitation data within time windows on an hour-by-hour basis and can correct the biases of real-time satellite precipitation data using dynamically changing parameters, fully taking into account the influence of precipitation spatial and temporal variability. Only short-term historical data are needed to accurately rate the parameters. The results show that the SISP algorithm can significantly reduce the biases of the original REGC, in which the values of relative bias (RB) in mainland China are reduced from 11.2% to 3.3%, and the values of root mean square error (RMSE) are also reduced by about 17%. The SISP algorithm has a better correction in humid and semi-humid regions than in arid and semi-arid regions and is effective in reducing the negative biases of precipitation in each climate region. In terms of rain intensity, the SISP algorithm can improve the overestimation of satellite precipitation estimates for low rain intensity (0.2-1 mm/h), but the correction for high rain intensity (>1 mm/h) needs further improvement. The error component analysis shows that the SISP algorithm can effectively correct the hit bias. This study serves as a valuable reference for real-time bias correction using short-term accumulated precipitation data.
英文关键词satellite precipitation estimates FY 4A bias correction real-time mainland China
类型Article
语种英语
开放获取类型gold
收录类别SCI-E
WOS记录号WOS:000970074000001
WOS关键词GAUGE OBSERVATIONS ; ERROR ANALYSIS ; RIVER-BASIN ; PRODUCTS ; IMERG ; GPM ; CLIMATE ; TRENDS
WOS类目Environmental Sciences ; Geosciences, Multidisciplinary ; Remote Sensing ; Imaging Science & Photographic Technology
WOS研究方向Environmental Sciences & Ecology ; Geology ; Remote Sensing ; Imaging Science & Photographic Technology
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/398255
推荐引用方式
GB/T 7714
Li, Ji,Yong, Bin,Shen, Zhehui,et al. A New Method for Hour-by-Hour Bias Adjustment of Satellite Precipitation Estimates over Mainland China[J],2023,15(7).
APA Li, Ji,Yong, Bin,Shen, Zhehui,Wu, Hao,&Yang, Yi.(2023).A New Method for Hour-by-Hour Bias Adjustment of Satellite Precipitation Estimates over Mainland China.REMOTE SENSING,15(7).
MLA Li, Ji,et al."A New Method for Hour-by-Hour Bias Adjustment of Satellite Precipitation Estimates over Mainland China".REMOTE SENSING 15.7(2023).
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