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首页> 外文期刊>Atmospheric research >Comparison of GPM IMERG, TMPA 3B42 and PERSIANN-CDR satellite precipitation products over Malaysia
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Comparison of GPM IMERG, TMPA 3B42 and PERSIANN-CDR satellite precipitation products over Malaysia

机译:马来西亚各地的GPM IMERG,TMPA 3B42和PERSIANN-CDR卫星降水产品比较

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The launch of the Global Precipitation Measurement (GPM) mission has prompted the assessment of the newly released satellite precipitation products (SPPs) in different parts of the world. This study performed an initial comparison of three GPM IMERG products (IMERG_E, IMERG_L and IMERG F) with its predecessor, the TMPA 3B42 and 3B42RT products, and a long-term PERSIANN-CDR product over Malaysia. The performance of six SPPs was evaluated using 501 precipitation gauges from 12 March 2014 to 29 February 2016. The annual, seasonal, monthly and daily precipitation measurements were validated using three widely used statistical metrics (CC, RMSE and RB). The precipitation detection capability (POD, FAR and CSI), probability density function (PDF) and the 2014-2015 flood event analysis were also considered in this assessment. The results show that all the SPPs perform well in annual and monthly precipitation measurements. The spatial variability of the total annual precipitation in 2015 is well captured by all six SPPs, with high precipitation amount in southern East Malaysia, and low precipitation amount in the middle part of Peninsular Malaysia. In contrast, all the SPPs show moderate correlation at daily precipitation estimations, with better performance during the northeast monsoon season. The performance of all the SPPs is better in eastern Peninsular Malaysia, but poorer in northern Peninsular Malaysia. All the SPPs have good precipitation detection ability, except the PERSIANN-CDR. All the SPPs underestimate the light (0-1 mm/day) and violent ( 50 mm/day) precipitation classes, but overestimate moderate and heavy (1-50 mm/day) precipitation classes. The IMERG is shown to have a better capability in detecting light precipitation (0-1 mm/day) compared to the other SPPs. The PERSIANN-CDR has the worst performance in capturing all the precipitation classes, with significant underestimation of light precipitation (0-1 mm/day) class and overestimation of moderate and heavy precipitation classes. The IMERG near-real time products with finer temporal and spatial resolutions can be regarded as a reliable precipitation source in studying the 2014-2015 flood event in Malaysia.
机译:全球降水测量(GPM)任务的启动促使对世界不同地区新发布的卫星降水产品(SPPs)进行评估。这项研究对三种GPM IMERG产品(IMERG_E,IMERG_L和IMERG F)及其前身TMPA 3B42和3B42RT产品以及马来西亚的长期PERSIANN-CDR产品进行了初步比较。从2014年3月12日至2016年2月29日,使用501个降水量表评估了六个SPP的性能。使用三个广泛使用的统计指标(CC,RMSE和RB)验证了年度,季节性,每月和每日降水量的测量结果。该评估还考虑了降水探测能力(POD,FAR和CSI),概率密度函数(PDF)和2014-2015年洪水事件分析。结果表明,所有SPP在年和月降水量测量中均表现良好。所有六个SPP都很好地把握了2015年全年降水的空间变异性,其中东马来西亚南部的降水量高,而马来西亚半岛中部的降水量低。相比之下,所有的SPPs在日常降水估计中都显示出适度的相关性,在东北季风季节期间表现更好。在马来西亚东部的半岛,所有SPP的表现都较好,但在马来西亚北部的北部,表现较差。除PERSIANN-CDR外,所有SPP都具有良好的降水检测能力。所有的SPP都低估了轻度(0-1毫米/天)和剧烈(> 50毫米/天)的降水等级,但高估了中度和重度(1-50毫米/天)的降水等级。与其他SPP相比,IMERG具有更好的检测光降水(0-1毫米/天)的能力。 PERSIANN-CDR在捕获所有降水量类别方面的性能最差,其中轻度降水量(0-1毫米/天)明显低估而中度和重度降水量类别高估了。在研究马来西亚2014-2015年洪水事件时,具有更佳时空分辨率的IMERG近实时产品可被视为可靠的降水源。

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