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Estimating Zenith Tropospheric Delays from BeiDou Navigation Satellite System Observations

机译:从北斗导航卫星系统观测值估计天顶对流层延迟

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摘要

The GNSS derived Zenith Tropospheric Delay (ZTD) plays today a very critical role in meteorological study and weather forecasts, as ZTDs of thousands of GNSS stations are operationally assimilated into numerical weather prediction models. Recently, the Chinese BeiDou Navigation Satellite System (BDS) was officially announced to provide operational services around China and its neighborhood and it was demonstrated to be very promising for precise navigation and positioning. In this contribution, we concentrate on estimating ZTD using BDS observations to assess its capacity for troposphere remote sensing. A local network which is about 250 km from Beijing and comprised of six stations equipped with GPS- and BDS-capable receivers is utilized. Data from 5 to 8 November 2012 collected on the network is processed in network mode using precise orbits and in Precise Point Positioning mode using precise orbits and clocks. The precise orbits and clocks are generated from a tracking network with most of the stations in China and several stations around the world. The derived ZTDs are compared with that estimated from GPS data using the final products of the International GNSS Service (IGS). The comparison shows that the bias and the standard deviation of the ZTD differences are about 2 mm and 5 mm, respectively, which are very close to the differences of GPS ZTD estimated using different software packages.
机译:GNSS衍生的天顶对流层延迟(ZTD)今天在气象研究和天气预报中起着至关重要的作用,因为成千上万个GNSS站的ZTD在操作上已被纳入数值天气预报模型中。近日,中国北斗导航卫星系统(BDS)正式宣布将在中国及其周边地区提供运营服务,事实证明,其对精确导航和定位非常有前途。在此贡献中,我们集中于使用BDS观测来估计ZTD,以评估其对流层遥感的能力。利用距北京约250公里的本地网络,该网络由六个配备GPS和BDS功能的接收器的站组成。 2012年11月5日至8日在网络上收集的数据将在网络模式下使用精确的轨道进行处理,并在精确点定位模式下使用精确的轨道和时钟进行处理。精确的轨道和时钟是由跟踪网络生成的,该网络具有中国大部分站点和全球多个站点。使用国际GNSS服务(IGS)的最终产品,将得出的ZTD与从GPS数据估算的ZTD进行比较。比较表明,ZTD差异的偏差和标准偏差分别约为2 mm和5 mm,非常接近使用不同软件包估算的GPS ZTD的差异。

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