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A new differential code bias (C1-P1) estimation method and its performance evaluation

机译:一种新的差分码偏(C1-P1)估计方法及其性能评估

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摘要

The current satellite clock products are computed using the ionosphere-free phase (L1/L2) and code (P1/P2) observations. Thus, if users conduct undifferenced positioning using these clock products together with C1 and P2 observations, the differential code bias (DCB) (C1-P1) should be properly compensated. The influence of DCB (C1-P1) on the undifferenced ambiguity solutions is investigated. Based on the investigation, we propose a new DCB (C1-P1) estimation method. Using it, the satellite DCB (C1-P1) can be computed. A 30-day (DOY 205-234, 2012) dual-frequency GPS data set is processed to estimate the DCB (C1-P1). Comparing the estimated results with that of IGS DCB products, the accuracy is better than 0.13 m. The performances of DCB (C1-P1) in the code-based single-point positioning, precise point positioning (PPP) convergence and wide-lane uncalibrated phase delay (UPD) estimation are investigated using the estimated DCB (C1-P1). The results of the code-based single-point positioning show that the influence of DCB (C1-P1) on the up direction is more evident than on the horizontal directions. The accuracy is improved by 50 % and reaches to decimeter level with DCB (C1-P1) application. The performance of DCB (C1-P1) in PPP shows that it can accelerate PPP convergence through improving the accuracy of the code observation. The computed UPD values show that influence of DCB (C1-P1) on UPD of each satellite is different, and some values are larger than 0.3 cycles.
机译:当前的卫星时钟乘积是使用无电离层相位(L1 / L2)和代码(P1 / P2)观测值计算的。因此,如果用户使用这些时钟产品以及C1和P2观测值进行无差异的定位,则应适当补偿差分代码偏置(DCB)(C1-P1)。研究了DCB(C1-P1)对无歧义解的影响。在此基础上,我们提出了一种新的DCB(C1-P1)估计方法。使用它,可以计算出卫星DCB(C1-P1)。处理30天(DOY 205-234,2012年)的双频GPS数据集以估算DCB(C1-P1)。将估计结果与IGS DCB产品的估计结果进行比较,精度优于0.13 m。使用估计的DCB(C1-P1),研究了DCB(C1-P1)在基于代码的单点定位,精确点定位(PPP)收敛和宽车道未校准相位延迟(UPD)估计中的性能。基于代码的单点定位的结果表明,DCB(C1-P1)对向上方向的影响比对水平方向的影响更明显。使用DCB(C1-P1)时,精度提高了50%,达到了分米级。 DCB(C1-P1)在PPP中的性能表明,它可以通过提高代码观察的准确性来加速PPP收敛。计算出的UPD值表明,DCB(C1-P1)对每颗卫星的UPD的影响是不同的,并且某些值大于0.3个周期。

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