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首页> 外文期刊>Journal of Earth System Science >Calibration of regional ionospheric delay with uncombined precise point positioning and accuracy assessment
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Calibration of regional ionospheric delay with uncombined precise point positioning and accuracy assessment

机译:结合不精确的点定位和准确性评估来校准区域电离层延迟

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摘要

A new method for the calibration of regional ionospheric delay based on uncombined precise point positioning (U-PPP) is proposed in this study. The performance of the new method was comparatively validated in terms of its accuracy and robustness with respect to the phase-smoothed pseudorange (PSP) method through two short-baseline experiments. Accuracy of the PPP-derived ionospheric delays was further assessed by interpolating them to a user station to perform single-frequency simulated kinematic PPP. Two 24-hr period datasets of four continuous operation reference system (CORS) stations were analyzed, collected during calm and disturbed ionospheric conditions, respectively. The single-frequency GPS observables from a user station, that were a-priori corrected by the interpolated ionospheric delays, were utilized to implement single-frequency PPP (SF-PPP). The results show that interpolation accuracy is better than 1 dm and, with the proposed method, is less affected by the ionospheric activity; meanwhile, positioning accuracy of SF-PPP was 4~5 cm (horizontal) and better than 1 dm (vertical). For comparison, two reference SF-PPP solutions were also obtained, in which the ionospheric delays are eliminated either by forming semi-combination observations or by using global ionosphere maps (GIM) model values; in both cases the positioning accuracy was only 4~7 dm (horizontal) and 1 m (vertical). These results provide a further demonstration of the performance of PPP-based regional ionospheric calibration in the parameter domain.
机译:提出了一种基于非组合精确点定位(U-PPP)的区域电离层时延校准新方法。通过两次短基线实验,相对于相位平滑伪距(PSP)方法,该新方法的性能在准确性和鲁棒性方面得到了相对验证。通过将PPP衍生的电离层延迟内插到用户站以执行单频模拟运动学PPP,可以进一步评估其精度。分析了四个连续运行参考系统(CORS)站的两个24小时周期数据集,分别在平静和电离层条件下收集。通过插值电离层延迟先验校正的来自用户站的单频GPS观测值被用于实现单频PPP(SF-PPP)。结果表明,插值精度优于1 dm,并且该方法受电离层活动的影响较小。同时,SF-PPP的定位精度为4〜5 cm(水平),优于1 dm(垂直)。为了进行比较,还获得了两个参考SF-PPP解决方案,其中通过形成半组合观测值或使用全局电离层图(GIM)模型值来消除电离层延迟;在这两种情况下,定位精度仅为4〜7 dm(水平)和1 m(垂直)。这些结果进一步证明了在参数域中基于PPP的区域电离层校准的性能。

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