首页> 外文期刊>Journal of Geodesy >Beyond three frequencies: an extendable model for single-epoch decimeter-level point positioning by exploiting Galileo and BeiDou-3 signals
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Beyond three frequencies: an extendable model for single-epoch decimeter-level point positioning by exploiting Galileo and BeiDou-3 signals

机译:超越三个频率:利用Galileo和BeiDou-3信号的单周期分米级点定位的可扩展模型

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摘要

GNSS is indispensable to self-driving vehicles by delivering decimeter-level or better absolute positioning solutions. Such a high precision normally requires a convergence time spanning seconds to minutes, which is, however, unrealistic in extremely difficult driving conditions where GNSS signals are obstructed frequently. Such convergences, no matter how short, will greatly risk and discredit autonomous driving in satisfying stringent life safety standards. In this study, we therefore developed an extendable GNSS precise point positioning (PPP) model to exploit the advanced Galileo/BeiDou-3 more-than-three-frequency signals with the goal of achieving instant or single-epoch 10-30 cm positioning accuracy and over 99% availability for the horizontal components over wide areas. In particular, uncombined Galileo/BeiDou-3 signals on all available frequencies were injected simultaneously into PPP to perform single-epoch wide-lane ambiguity resolution (PPP-WAR) after phase bias calibrations on raw observations. Experimenting on the Galileo five-frequency data from 36 stations in Australia, we found that instant PPP-WAR was accomplished at more than 99.5% of all epochs; we achieved an instant positioning accuracy of 0.10 and 0.11 m (1 sigma) for the east and north components, respectively, using Galileo E1/E5a/E5/E5b/E6 signals from less than 10 satellites, while 0.16 and 0.23 m using BeiDou-3 B1C/B1I/B2a/B2b/B3I signals from only 5-6 satellites per epoch observed by 10 stations within China. Moreover, we carried out vehicle-borne experiments collecting multi-frequency Galileo/BeiDou-3 signals in the case of overpass and tunnel adversities. With 7 Galileo/BeiDou-3 satellites per epoch on average, instant PPP-WAR reached a mean positioning accuracy of 0.23 and 0.24 m for the horizontal components, which can be further improved to 0.14 and 0.12 m when multi-epoch filtering is preferably enabled. More encouragingly, though this positioning accuracy can also be ensured with triple-frequency data, the data redundancy favored by even more frequencies can reduce the high-precision recovery time from up to 4 s to 2 s in the case of total signal blockages. With the rapidly ongoing deployment of Galileo, BeiDou-3 and other GNSS constellations, we can envision an instant global positioning service characterized by around 20 cm horizontal accuracy and over 99% availability for self-driving vehicles.
机译:通过提供分米级或更好的绝对定位解决方案,GNSS对于自动驾驶汽车是必不可少的。如此高的精度通常需要几秒钟到几分钟的收敛时间,但是,这在极度困难的驾驶条件下是不现实的,在这种情况下,GNSS信号经常受到阻碍。这种融合,无论多么短暂,都将在满足严格的生命安全标准方面极大地冒着风险,使自动驾驶失去信誉。因此,在这项研究中,我们开发了可扩展的GNSS精确点定位(PPP)模型,以利用先进的Galileo / BeiDou-3多于三频信号,以实现即时或单时10-30 cm定位精度而且水平组件在广泛区域中的可用性超过99%。特别是,将所有可用频率上的未组合Galileo / BeiDou-3信号同时注入到PPP中,以在对原始观测值进行相位偏差校准后执行单时宽车道歧义分辨率(PPP-WAR)。通过对来自澳大利亚36个站点的伽利略五频数据进行的实验,我们发现即时PPP-WAR的完成时间超过了所有时期的99.5%;我们使用来自少于10颗卫星的伽利略E1 / E5a / E5 / E5b / E6信号分别对东部和北部的瞬时定位精度分别为0.10和0.11 m(1 sigma),而使用BeiDou-在中国的10个台站观测到的每个时期仅5-6颗卫星发出的3个B1C / B1I / B2a / B2b / B3I信号。此外,我们进行了车载实验,以在天桥和隧道逆境情况下收集多频Galileo / BeiDou-3信号。平均每个周期使用7个Galileo / BeiDou-3卫星,即时PPP-WAR对水平分量的平均定位精度达到0.23和0.24 m,如果最好启用多周期过滤,则可以进一步提高到0.14和0.12 m 。更令人鼓舞的是,尽管三频数据也可以确保这种定位精度,但是在总信号阻塞的情况下,更多频率支持的数据冗余可以将高精度恢复时间从最多4 s减少到2 s。随着Galileo,BeiDou-3和其他GNSS星座的快速部署,我们可以设想一种即时全球定位服务,其水平精度约为20厘米,自动驾驶车辆的可用性超过99%。

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