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Performance of real-time undifferenced precise positioning assisted by remote IGS multi-GNSS stations

机译:远程IGS多GNSS站辅助实时无限定位的实时无限定位性能

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摘要

The heavy reliance of real-time precise point positioning (RTPPP) on external satellite clock products may lead to discontinuity or even failure in time-critical applications. We present an alternative approach of real-time undifferenced precise positioning (RUP) that, by combining satellite clock estimation and precise point positioning based on the extended Kalman filter, is independent of external satellite clock corrections. The approach is evaluated in simulated real time with the assistance of a variable number of IGS multi-GNSS stations located between 1359.7 and 4852.5 km from the users. The results show that even with a single auxiliary IGS station, RUP is still feasible and able to retain centimeter-level positioning accuracy. Typically, with three auxiliary IGS stations about 2000-3000 km away, an accuracy of about 2 cm in the horizontal and 5 cm in the vertical can be achieved. The performance of RUP is comparable to that of PPP using 5-s satellite clock products and notably exhibits superior short-term precision in dealing with high-rate (1 Hz) GPS/GLONASS observations. The addition of GLONASS observations reduces the convergence time by 56.9% and improves the 3-D position accuracy by 31.8% while increasing the processing latency by a factor of about 1.6. Employing three IGS stations over 2400 km away from the epicenter, RUP is applied for the rapid determination of coseismic displacements and waveforms for the 2016 Kaikoura earthquake, yielding highly consistent results compared to those obtained from post-processed PPP in the global reference frame. We also explore its potential in facilitating real-time online services in terms of real-time precise positioning, zenith tropospheric delay retrieving, and satellite clock estimation.
机译:实时精确点定位(RTPPP)对外部卫星时钟产品的沉重依赖可能导致不连续性或甚至在时间关键时的故障。我们介绍了实时无病的精确定位(RUP)的替代方法,即通过基于扩展卡尔曼滤波器组合卫星时钟估计和精确点定位,与外部卫星时钟校正相结合。该方法是在距离用户1359.7和4852.5公里之间的可变数量的IGS多GNSS站的模拟实时评估。结果表明,即使使用单个辅助IGS站,RUP仍然可行,能够保留厘米级定位精度。通常,在大约2000-3000公里的辅助IGS站距离外,可以实现水平和5厘米在垂直方案中的约2cm的精度。 RUP的性能与使用5-S卫星时钟产品的PPP的性能相当,并且显着地表现出卓越的短期精度,用于处理高速(1 Hz)GPS / GLONASS观察。 Glonass观察的添加将收敛时间降低56.9%,并通过31.8%提高了3-D定位精度,同时将处理延迟提高了约1.6的因子。使用三个IGS站距离震中有2400公里,RUP适用于2016年kaikoura地震的电影发作位移和波形的快速确定,与全球参考框架中的后处理PPP获得的那些产生高度一致的结果。我们还探讨了在实时精确定位,Zenith对流层延迟检索和卫星时钟估计方面促进实时在线服务的潜力。

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