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AFRC-Trop: New Real-Time Zenith Tropospheric Delay Model over Africa

机译:AFRC-TROP:非洲的新实时Zenith对流层延迟模型

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This study aims to develop a new real-time zenith tropospheric delay (ZTD) model over Africa, namely the AFRC-Trop model. In order to estimate the ZTD, global positioning system (GPS) observations from 14 reference stations are processed in the precise point positioning (PPP) mode using the international global navigation satellite system (GNSS) real-time service (IGS-RTS) products. Then, the Kriging interpolation technique is used to compute the ZTD for a 1 degrees x 1 degrees grid at a 1-h time interval. The AFRC-Trop-derived ZTD is validated with respect to the IGS and the Center for Orbit Determination in Europe (CODE) tropospheric products counterparts. The computed ZTD are compared as well with the very-long-baseline interferometry (VLBI) tropospheric products. Additionally, the proposed model is validated with the empirical tropospheric models, namely the University of New Brunswick (UNB3m) and the Global Pressure and Temperature 2 Wet (GPT2w) models. The findings indicate that the newly developed AFRC-Trop model shows good agreement within a few centimeters with the IGS, CODE, VLBI, UNB3m, and GPT2w models. (C) 2021 American Society of Civil Engineers.
机译:本研究旨在在非洲开发新的实时Zenith对流层延迟(ZTD)模型,即AFRC-TOF模型。为了估计ZTD,使用国际全球导航卫星系统(GNSS)实时服务(IGS-RTS)产品,在精确点定位(PPP)模式中处理来自14个参考站的全局定位系统(GPS)观察。然后,使用Kriging插值技术以1小时的时间间隔计算1度x 1 1度网格的ZTD。 AFRC-TOP衍生的ZTD关于IGS和欧洲(代码)对流层产品同行的IGS和轨道测定中心验证。计算的ZTD也与非常长的基线干涉测量(VLBI)对流层产品进行比较。此外,拟议的模型与经验丰富的对流层模型验证,即新的布鲁克斯克(UNB3M)大学和全球压力和温度2湿(GPT2W)型号。调查结果表明,新开发的AFRC-TOP模型在几厘米内显示出良好的一致性,IGS,代码,VLBI,UNB3M和GPT2W模型。 (c)2021年美国土木工程师协会。

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