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An Improved Method for BDS Inter-frequency Clock Bias Estimation

机译:BDS频率间时钟偏差估计的一种改进方法

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Inter-frequency clock bias (IFCB) should be considered when performing triple-frequency GNSS precise point positioning (PPP). Traditional approach of IFCB estimation is by averaging IFCB of all stations. However, this method doesn't consider the variation of receiver IFCB, so the averaged receiver IFCB is lumped into satellite IFCB. If the receiver IFCB can't eliminate by averaging when station number is limited, this method is not theoretical compactness. In this paper, we propose a more compactness IFCB estimation method based on network solution. In this method, the satellite and receiver IFCB are estimated together under a constraint of satellite IFCB. To validate this method, we select a 60-days global MGEX data and estimate the BDS IFCB between B1B2 and B1B3. Results show that BDS IFCB is within 10 cm and the RMS for all satellites are within 3 cm, while for receiver IFCB, it has a similar periodic performance as satellite. After correcting IFCB in kinematic PPP using B1B3 combination, statistical results among 13 MGEX stations show about 0.5 cm improvement in horizontal and vertical comparing with uncorrected IFCB PPP solution.
机译:执行三频GNSS精确点定位(PPP)时,应考虑跨频时钟偏置(IFCB)。 IFCB估计的传统方法是对所有站点的IFCB进行平均。但是,这种方法没有考虑接收机IFCB的变化,因此将平均接收机IFCB集中到卫星IFCB中。如果在站数受限时无法通过平均消除接收器IFCB,则此方法不是理论上的紧凑性。在本文中,我们提出了一种基于网络解决方案的更紧凑的IFCB估计方法。在这种方法中,在卫星IFCB的约束下,一起估算了卫星和接收机IFCB。为了验证该方法,我们选择了60天的全球MGEX数据,并估算了B1B2和B1B3之间的BDS IFCB。结果表明,BDS IFCB在10厘米以内,所有卫星的RMS在3厘米以内,而接收机IFCB的周期性性能与卫星类似。在使用B1B3组合校正了运动学PPP中的IFCB之后,在13个MGEX站之间的统计结果显示,与未校正的IFCB PPP解决方案相比,水平和垂直方向上的距离提高了约0.5 cm。

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