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M_DCB: Matlab code for estimating GNSS satellite and receiver differential code biases

机译:M_DCB:用于估算GNSS卫星和接收机差分代码偏差的Matlab代码

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Global navigation satellite systems (GNSS) have been widely used to monitor variations in the earth’s ionosphere by estimating total electron content (TEC) using dual-frequency observations. Differential code biases (DCBs) are one of the important error sources in estimating precise TEC from GNSS data. The International GNSS Service (IGS) Analysis Centers have routinely provided DCB estimates for GNSS satellites and IGS ground receivers, but the DCBs for regional and local network receivers are not provided. Furthermore, the DCB values of GNSS satellites or receivers are assumed to be constant over 1 day or 1 month, which is not always the case. We describe Matlab code to estimate GNSS satellite and receiver DCBs for time intervals from hours to days; the software is called M_DCB. The DCBs of GNSS satellites and ground receivers are tested and evaluated using data from the IGS GNSS network. The estimates from M_DCB show good agreement with the IGS Analysis Centers with a mean difference of less than 0.7 ns and an RMS of less than 0.4 ns, even for a single station DCB estimate.
机译:全球导航卫星系统(GNSS)已被广泛用于通过使用双频观测估计总电子含量(TEC)来监测地球电离层的变化。差分代码偏差(DCB)是根据GNSS数据估算精确TEC的重要误差来源之一。国际GNSS服务(IGS)分析中心通常会为GNSS卫星和IGS地面接收器提供DCB估计,但未提供区域和本地网络接收器的DCB。此外,GNSS卫星或接收器的DCB值假定在1天或1个月内保持恒定,但情况并非总是如此。我们描述了Matlab代码,以估计从几小时到几天的时间间隔的GNSS卫星和接收器DCB;该软件称为M_DCB。使用来自IGS GNSS网络的数据测试和评估GNSS卫星和地面接收器的DCB。 M_DCB的估计值与IGS分析中心显示出良好的一致性,即使对于单站DCB估计值,其平均差也小于0.7 ns,RMS小于0.4 ns。

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