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首页> 外文期刊>Natural hazards and earth system sciences >CDRD and PNPR satellite passive microwave precipitation retrieval algorithms: EuroTRMM/EURAINSAT origins and H-SAF operations
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CDRD and PNPR satellite passive microwave precipitation retrieval algorithms: EuroTRMM/EURAINSAT origins and H-SAF operations

机译:CDRD和PNPR卫星无源微波降水反演算法:EuroTRMM / EURAINSAT的起源和H-SAF操作

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摘要

Satellite Application Facility on Support to Operational Hydrology and Water Management (H-SAF) is a EUMETSAT (European Organisation for the Exploitation of Meteorological Satellites) program, designed to deliver satellite products of hydrological interest (precipitation, soil moisture and snow parameters) over the European and Mediterranean region to research and operations users worldwide. Six satellite precipitation algorithms and concomitant precipitation products are the responsibility of various agencies in Italy. Two of these algorithms have been designed for maximum accuracy by restricting their inputs to measurements from conical and cross-track scanning passive microwave (PMW) radiometers mounted on various low Earth orbiting satellites. They have been developed at the Italian National Research Council/Institute of Atmospheric Sciences and Climate in Rome (CNR/ISAC-Rome), and are providing operational retrievals of surface rain rate and its phase properties. Each of these algorithms is physically based, however, the first of these, referred to as the Cloud Dynamics and Radiation Database (CDRD) algorithm, uses a Bayesian-based solution solver, while the second, referred to as the PMW Neural-net Precipitation Retrieval (PNPR) algorithm, uses a neural network-based solution solver. Herein we first provide an overview of the two initial EU research and applications programs that motivated their initial development, EuroTRMM and EURAINSAT (European Satellite Rainfall Analysis and Monitoring at the Geostationary Scale), and the current H-SAF program that provides the framework for their operational use and continued development. We stress the relevance of the CDRD and PNPR algorithms and their precipitation products in helping secure the goals of H-SAF's scientific and operations agenda, the former helpful as a secondary calibration reference to other algorithms in H-SAF's complete mix of algorithms. Descriptions of the algorithms' designs are provided including a few examples of their performance. This aspect of the development of the two algorithms is placed in the context of what we refer to as the TRMM era, which is the era denoting the active and ongoing period of the Tropical Rainfall Measuring Mission (TRMM) that helped inspire their original development. In 2015, the ISAC-Rome precipitation algorithms will undergo a transformation beginning with the upcoming Global Precipitation Measurement (GPM) mission, particularly the GPM Core Satellite technologies. A few years afterward, the first pair of imaging and sounding Meteosat Third Generation (MTG) satellites will be launched, providing additional technological advances. Various of the opportunities presented by the GPM Core and MTG satellites for improving the current CDRD and PNPR precipitation retrieval algorithms, as well as extending their product capability, are discussed.
机译:支持业务水文学和水管理的卫星应用设施(H-SAF)是EUMETSAT(欧洲气象卫星开发组织)计划,旨在在整个月期间提供具有水文意义的卫星产品(降水,土壤湿度和降雪参数)。欧洲和地中海地区的研究和运营用户遍布全球。意大利各机构负责六种卫星降水算法及其伴随的降水产品。通过将它们的输入限制为安装在各种低地球轨道卫星上的圆锥形和跨轨道扫描无源微波(PMW)辐射计的测量值,可以将其中两种算法设计为具有最高的精度。它们是由意大利国家研究委员会/罗马大气科学与气候研究所(CNR / ISAC-Rome)开发的,可提供地表降雨率及其相态特性的可操作检索。这些算法中的每一种都是基于物理的,但是,第一种算法(称为云动态和辐射数据库(CDRD)算法)使用基于贝叶斯的解决方案求解器,而第二种称为PMW神经网络沉淀法检索(PNPR)算法,使用基于神经网络的解决方案求解器。在这里,我们首先概述了两个最初的欧盟研究和应用计划,这些计划激发了它们的最初发展,即EuroTRMM和EURAINSAT(欧洲地球静止规模的欧洲卫星降雨分析和监测),以及当前的H-SAF计划,为其提供了框架操作使用和持续发展。我们强调CDRD和PNPR算法及其沉淀产物在帮助确保H-SAF的科学和运营议程目标方面的相关性,前者作为H-SAF完整算法组合中其他算法的辅助校准参考。提供了算法设计的说明,包括其性能的一些示例。两种算法开发的这一方面都放在我们称为TRMM时代的背景下,该时代代表了热带雨量测量任务(TRMM)的活跃和持续时期,有助于激发他们的原始发展。从即将到来的全球降水测量(GPM)任务开始,尤其是GPM核心卫星技术,ISAC-Rome降水算法将在2015年进行转型。几年后,将发射第一对成像和探测的第三代气象卫星(MTG),这将提供更多的技术进步。讨论了GPM核心和MTG卫星为改善当前CDRD和PNPR降水检索算法以及扩展其产品能力而提供的各种机会。

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