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首页> 外文期刊>International journal of remote sensing >Improving the accuracy of global precipitation measurement integrated multi-satellite retrievals (GPM IMERG) using atmosphere precipitable water and altitude in climatic regions of Iran
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Improving the accuracy of global precipitation measurement integrated multi-satellite retrievals (GPM IMERG) using atmosphere precipitable water and altitude in climatic regions of Iran

机译:利用伊朗气候区中的​​气氛降水水和高度提高全球降水测量集成的多卫星检索(GPM IMERG)的准确性

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摘要

The global precipitation measurement integrated multi-satellite retrievals (GPM IMERG) provide a new opportunity to estimate precipitation remotely. However, the accuracy of estimations varies in different regions. Therefore, the aim of this study is to improve the IMERG precipitation estimations using two influencing factors including total precipitable water (TPW) and altitude data. The investigations were performed in six rainfall climatic regions of Iran using daily and six-hourly IMERG estimations in years 2015 to 2017. TPW was extracted from a locally developed algorithm for the moderate resolution imaging spectroradiometer (MODIS) measurements. Different models named as M1 to M4 were investigated by considering combinations of the linear and quadratic forms of the IMERG precipitation, TPW, and altitude. The results were evaluated by root mean square error (RMSE), correlation coefficient (r), and Nash-Sutcliffe (NSc). The results showed that the M1 represents the best performance among the proposed models, which uses linear relationship of the IMERG estimations and TPW along with the constant value. The mean values of r, RMSE, and NSc criteria for daily precipitation estimations of IMERG were acquired as 0.46, 5.88, and -2.77 mm, respectively. Those values were improved by M1 to 0.52, 0.18, and 0.27 mm, respectively. Moreover, the evaluation results of IMERG six-hourly precipitation estimations showed r, RMSE, and NSc of 0.65, 11.26, and -33.27 mm. The values of these criteria were improved by M1 to 0.65, 0.07, and 0.32 mm. In general, the results proved the ability of TPW to improve IMERG precipitation estimations in the study area.
机译:全球降水测量集成的多卫星检索(GPM IMerc)为远程估算降水的新机会提供了新的机会。但是,估计的准确性在不同的区域中变化。因此,本研究的目的是使用两个影响因素改善IMERG降水估计,包括总可降水(TPW)和高度数据。 2015年至2017年使用每日和六小时的IMERG估计在伊朗的六个降雨气候区域进行了调查。从局部开发的算法中提取TPW,用于适度分辨率成像光谱仪(MODIS)测量。通过考虑IMERG沉淀,TPW和高度的线性和二次形式的组合来研究名为M1至M4的不同模型。结果通过均均方误差(RMSE),相关系数(R)和NASH-SUTCLIFFE(NSC)进行评估。结果表明,M1代表了所提出的模型中的最佳性能,它使用IMERG估计和TPW的线性关系以及恒定值。用于IMERG的日降水估计的R,RMSE和NSC标准的平均值分别为0.46,5.88和-2.77 mm。这些值分别通过M1至0.52,0.18和0.27mm改善。此外,IMERG六小时降水估计的评价结果​​显示R,RMSE和NSC为0.65,11.26和-33.27mm。这些标准的值得到改善M1至0.65,0.07和0.32mm。一般而言,结果证明了TPW能够改善研究区域的IMERG降水估计。

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  • 来源
    《International journal of remote sensing》 |2021年第8期|2759-2781|共23页
  • 作者单位

    KN Toosi Univ Technol Fac Civil Engn Water Resources Engn & Management Dept Tehran Iran Islamic R;

    KN Toosi Univ Technol Fac Civil Engn Water Resources Engn & Management Dept Tehran Iran Islamic R;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
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