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Satellite clock estimation at 1 Hz for realtime kinematic PPP applications

机译:用于实时运动PPP应用的1 Hz卫星时钟估计

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Realtime kinematic precise point positioning (PPP) requires 1 Hz GPS satellite clock corrections. An efficient clock estimation approach is presented. It applies a combined dual-thread algorithm consisting of an undifferenced (UD) and epoch-differenced (ED) engine. The UD engine produces absolute clock values every 5 s, and the ED engine produces relative clock values between neighboring epochs at 1-s interval. A final 1-Hz satellite clock can be generated by combining the UD absolute clock and ED relative clock efficiently and accurately. Forty stations from a global tracking network are used to estimate the realtime 1-Hz clock with the proposed method. Both the efficiency and accuracy of the resultant clock corrections are validated. Efficiency test shows that the UD processing thread requires an average time of 1.88 s on a 1-GHz CPU PC for one epoch of data, while ED processing requires only 0.25 s. Accuracy validation test shows that the estimated 1-Hz clock agrees with IGS final clock accurately. The RMS values of all the available GPS satellite clock bias are less than 0.2 ns (6 cm), and most of them are less than 0.1 ns (3 cm). All the RMS values of Signal in Space Range Error (SISRE) are at centimeter level. Applying the accurate and realtime clock to realtime PPP, an accuracy of 10 cm in the horizontal and 20 cm in the vertical is achieved after a short period of initialization.
机译:实时运动学精确点定位(PPP)需要1 Hz GPS卫星时钟校正。提出了一种有效的时钟估计方法。它应用了由无差异(UD)和时差(ED)引擎组成的组合双线程算法。 UD引擎每5 s产生绝对时钟值,而ED引擎以1 s的间隔产生相邻历元之间的相对时钟值。通过有效且准确地组合UD绝对时钟和ED相对时钟,可以生成最终的1 Hz卫星时钟。来自全球跟踪网络的40个站被用于通过所提出的方法估计实时1-Hz时钟。结果时钟校正的效率和准确性均得到验证。效率测试表明,在1 GHz CPU PC上,UD处理线程平均需要1.88 s的时间来获取一个周期的数据,而ED处理仅需要0.25 s的时间。准确性验证测试表明,估计的1 Hz时钟与IGS最终时钟准确吻合。所有可用的GPS卫星时钟偏置的RMS值均小于0.2 ns(6厘米),并且大多数都小于0.1 ns(3厘米)。所有信号在空间范围误差(SISRE)中的RMS值都在厘米级。将精确的实时时钟应用于实时PPP,经过短时间的初始化,水平精度达到10 cm,垂直精度达到20 cm。

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    《GPS Solutions》 |2011年第4期|p.315-324|共10页
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