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首页> 外文期刊>Survey Review >THE USE OF GPS FOR THE ESTIMATION OF PRECIPITABLE WATER VAPOUR FOR WEATHER FORECASTING AND MONITORING IN SOUTH AFRICA
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THE USE OF GPS FOR THE ESTIMATION OF PRECIPITABLE WATER VAPOUR FOR WEATHER FORECASTING AND MONITORING IN SOUTH AFRICA

机译:利用GPS估算南非天气预报和监测中的精密水蒸气。

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摘要

The propagation of the Global Positioning System (GPS) signal from the satellite to the receiver is affected by, among other factors, the atmosphere through which it passes and, whereas the effects of the ionosphere can be eliminated by the differencing of the two transmitted frequencies, the effects of the troposphere remain one of the major sources of noise in traditional geodetic and positioning applications of GPS. This noise can, however, be turned into a signal for the meteorologist and, by applying suitable constraints and processing strategies, it is possible to estimate the amount of precipitable water vapour (PWV) in the atmosphere. The application of the GPS data for the estimation of PWV in the atmosphere is not a new concept and has been described in many publications and reports since the early 1990s. This project is, however, an attempt to test the technique using the South African network of permanent GPS base stations. This paper describes the fundamental principles and the testing of the estimation of PWV using GPS and meteorological data from a network of nine permanent GPS base stations in South Africa. The results of the GPS derived estimates have been verified against upper air measurements from radiosonde ascents from a sub-net of five of the nine stations as well as with PWV estimated from a numerical weather model (NWM).
机译:全球定位系统(GPS)信号从卫星到接收器的传播受到其所经过的大气等因素的影响,而电离层的影响可以通过两个发射频率的差异来消除,对流层的影响仍是传统GPS的大地测量和定位应用中的主要噪声源之一。但是,这种噪声可以变成气象学家的信号,并且通过应用适当的约束条件和处理策略,可以估算大气中可沉淀的水蒸气(PWV)的量。自1990年代初以来,在许多出版物和报告中已将GPS数据用于估算大气中PWV并不是一个新概念。但是,此项目是尝试使用南非永久性GPS基站网络测试该技术的尝试。本文介绍了基本原理以及使用GPS和来自南非9个永久性GPS基站网络的气象数据估算PWV的测试。 GPS得出的估算结果已针对九个站中五个站的子网的探空仪上升进行的高空测量以及根据数值天气模型(NWM)估算的PWV进行了验证。

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