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Influences of the day-night differences of ionospheric variability on the estimation of GPS differential code bias

机译:电离层变化的昼夜差异对GPS差分码偏差估计的影响

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摘要

The estimation of differential code bias (DCB) of GPS system is one of the necessary steps for total electron content (TEC) derivation from GPS measurements. Usually, the method for estimating the GPS DCBs follows the assumption of the gentle temporal and spatial variation of the ionosphere, but this assumption is just an approximation because of the ionosphere's inherent variability. It has been indicated that the estimated GPS satellite DCBs are sometimes influenced by the ionospheric conditions. In this paper, we demonstrate a possible influence of ionospheric variability that differs between day and night on the estimated DCBs from measurements of a single GPS station. It is found that the average standard deviations (STDs) of the satellite DCBs estimated with daytime data are higher than that with the nighttime data. To reduce this day-night difference effect on GPS DCB determination, we use an improved estimation method based on the primary features of the ionospheric variability with local time. A local time dependent weighting function was introduced into the original least squares DCBs estimation algorithm. A test with data for BJFS station (39.60 degrees N, 115.89 degrees E) in 2001 indicates that the STD of the DCBs decreases from 2.533 TECU (total electron content unit, 1 TECU=10(16)elm(-2)) to 2.308 TECU, or by 8.9%, after the improved method was applied. For comparison, another test for the same station in 2009 indicates that the STD decreases from 1.344 TECU to 1.295 TECU. The amplitude of the 2009 improvement is very limited, only about 3.6%. The difference of the percentage improvements can probably be attributed to the different ionospheric conditions between 2001 and 2009.
机译:GPS系统的差分代码偏差(DCB)的估计是从GPS测量中得出总电子含量(TEC)的必要步骤之一。通常,估计GPS DCB的方法遵循电离层的时空变化平缓的假设,但是由于电离层固有的可变性,因此该假设只是一个近似值。已经表明,估计的GPS卫星DCB有时受电离层状况的影响。在本文中,我们演示了一个电离层变化的可能影响,该变化对单个GPS站的测量值估计的DCB昼夜不同。结果发现,白天数据估计的卫星DCB的平均标准偏差(STD)高于夜间数据估计的标准偏差。为了减少这种昼夜差异对GPS DCB确定的影响,我们使用了基于电离层随时间变化的主要特征的改进估算方法。本地时间相关的加权函数被引入到原始的最小二乘DCB估计算法中。 2001年使用BJFS站的数据(北纬39.60度,东经115.89度)进行的测试表明,DCB的STD从2.533 TECU(总电子含量单位,1 TECU = 10(16)elm(-2))降低至2.308应用改进方法后,TECU降低了8.9%。为了进行比较,2009年同一站点的另一项测试表明,STD从1.344 TECU降低到1.295 TECU。 2009年的改善幅度非常有限,仅为3.6%。改进百分比的差异可能归因于2001年到2009年之间的电离层条件不同。

著录项

  • 来源
    《Radio Science》 |2015年第4期|339-353|共15页
  • 作者单位

    Peking Univ, Dept Geophys, Beijing 100871, Peoples R China;

    Peking Univ, Dept Geophys, Beijing 100871, Peoples R China;

    MIT, Haystack Observ, Westford, MA 01886 USA;

    MIT, Haystack Observ, Westford, MA 01886 USA;

    Peking Univ, Dept Geophys, Beijing 100871, Peoples R China;

    Peking Univ, Dept Geophys, Beijing 100871, Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    ionosphere; GPS; total electron content; differential code bias;

    机译:电离层;GPS;总电子含量;微分偏置;

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