南海北部北斗动态精密单点定位精度分析

    Accuracy Analysis of BeiDou Kinematic Precise Point Positioning in the Northern South China Sea

    • 摘要: 随着我国海洋工程项目精细化程度的不断提高,对高精度海洋定位的稳定性和自主可控性提出更高要求,亟需对北斗卫星导航系统(BeiDou Navigation Satellite System, BDS)海洋高精度定位性能进行分析。本文利用南海北部全球导航卫星系统(Global Navigation Satellite System, GNSS)实测数据和武汉大学研发的精密单点定位(Precise Point Positioning, PPP)软件PRIDE PPP-AR,开展了单BDS、单全球定位系统(Global Positioning System, GPS)及GNSS全星座PPP试验,并对定位结果进行了对比分析。结果表明:在海南海口,单BDS、单GPS及GNSS全星座三种模式的静态模拟动态PPP的结果精度相当,其中以GNSS全星座的定位结果精度最高,三个方向均优于0.05 m;在南海北部海域,单BDS观测的几何结构优于单GPS,以GNSS全星座PPP结果为参考,单BDS PPP结果与GNSS全星座PPP结果高度一致,水平方向和高程方向的定位结果均方根误差分别低于0.01和0.02 m,显著优于单GPS PPP结果;以相对定位结果为参考,单BDS PPP与GNSS全星座PPP的精度一致,比单GPS PPP结果的误差低0.05 m左右。此外,10 Hz及以上采样率单北斗数据动态PPP定位结果中包含1 Hz采样率数据定位结果中未包含的厘米级动态位置信号,表明高采样率的北斗数据能支撑动态海洋环境下的形变监测需求。

       

      Abstract: With the continuous enhancement of refinement for marine engineering projects in China, higher requirements have been imposed on the stability and autonomous controllability of high-precision marine positioning. Therefore, it is imperative to analyze the high-precision positioning performance of the BeiDou Navigation Satellite System (BDS) in marine environments. This paper employs measured Global Navigation Satellite System (GNSS) data from the northern part of the South China Sea and utilizes the Precise Point Positioning with Ambiguity Resolution (PRIDE PPP-AR) software developed by Wuhan University to conduct Precise Point Positioning (PPP) experiments using single BDS, single Global Positioning System (GPS), and full GNSS constellation. A comparative analysis of the positioning results is then carried out. The results indicate that, in Haikou, Hainan, the accuracy of static simulated kinematic PPP results is comparable across the three modes of single BDS, single GPS, and full GNSS constellation, with the full GNSS constellation achieving the highest accuracy, surpassing 0.05 m in all three directions. In the northern South China Sea, the geometric configuration of single BDS observations is superior to that of single GPS. When referenced against PPP results from the full GNSS constellation, the PPP results from single BDS exhibit a high degree of agreement, with Root Mean Square Errors (RMSEs) in the horizontal and vertical directions being better than 0.01 m and 0.02 m, respectively, significantly outperforming the single GPS PPP results. When referenced against relative positioning results, the accuracy of single BDS PPP is consistent with that of the full GNSS constellation PPP and is approximately 0.05 m higher than that of single GPS PPP. Furthermore, Moreover, the dynamic PPP positioning results derived from single BDS data sampled at 10 Hz or higher contain centimeter-level dynamic positional signals that are not present in the results from 1 Hz sampled data, positioning results derived from single BDS data with a sampling rate of 10 Hz or higher contain centimeter-level dynamic positional information that is not captured by data sampled at 1 Hz, indicating that high-sampling-rate BDS data can effectively support deformation monitoring requirements in dynamic marine environments.

       

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