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An improved global zenith tropospheric delay model GZTD2 considering diurnal variations

机译:考虑日变化的改进的全球天顶对流层延迟模型GZTD2

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The zenith tropospheric delay (ZTD) is an important atmospheric parameter in the wide application of global navigation satellite systems (GNSS) technology in geoscience. Given that the temporal resolution of the current global zenith tropospheric delay model (GZTD) is only 24 h, an improved model, GZTD2, has been developed by taking the diurnal variations into consideration and modifying the model expansion function. The data set used to establish this model is the global ZTD grid data provided by Global Geodetic Observing System (GGOS) Atmosphere spanning from 2002 to 2009. We validated the proposed model with respect to ZTD grid data from GGOS Atmosphere, which was not involved in modeling, as well as International GNSS Service (IGS) tropospheric product. The obtained results of ZTD grid data show that the global average bias and root mean square (rms) for the GZTD2 model are 0.2 and 3.8 cm, respectively. The global average bias is comparable to that of the GZTD model, but the global average rms is improved by 3 mm. The bias and rms are far better than the EGNOS model and the UNB series models. The testing results from global IGS tropospheric product show the bias and rms (0.3 and 3.9 cm) of the GZTD2 model are superior to that of GZTD (-0.3 and 4.2 cm), suggesting higher accuracy and reliability compared to the EGNOS model, as well as the UNB series models.
机译:天顶对流层延迟(ZTD)是全球导航卫星系统(GNSS)技术在地球科学中的广泛应用中的重要大气参数。鉴于当前全球天顶对流层延迟模型(GZTD)的时间分辨率仅为24 h,因此通过考虑日变化和修改模型扩展函数,开发了一种改进的模型GZTD2。用于建立该模型的数据集是全球大地观测系统(GGOS)大气层从2002年至2009年提供的全球ZTD网格数据。我们针对GGOS Atmosphere的ZTD网格数据验证了所提出的模型,该模型未涉及建模以及国际GNSS服务(IGS)对流层产品。 ZTD网格数据的获得结果表明,GZTD2模型的全局平均偏差和均方根(rms)分别为0.2 cm和3.8 cm。全局平均偏差与GZTD模型的相当,但全局平均均方根值提高了3 mm。偏差和均方根值远远优于EGNOS模型和UNB系列模型。来自全球IGS对流层产品的测试结果表明,GZTD2模型的偏差和均方根值(0.3和3.9厘米)优于GZTD模型(-0.3和4.2厘米),这表明与EGNOS模型相比,其准确性和可靠性也更高作为UNB系列型号。

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