首页> 外文期刊>Journal of surveying engineering >Ionospheric Response to the Total Solar Eclipse of August 21, 2017, and Its Impact on GNSS Positioning
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Ionospheric Response to the Total Solar Eclipse of August 21, 2017, and Its Impact on GNSS Positioning

机译:对2017年8月21日日全食的电离层响应及其对GNSS定位的影响

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AbstractThe solar eclipse on August 21, 2017, passed through North America and considerably affected the electron density in the ionosphere. By taking advantage of a global navigation satellite system (GNSS) for monitoring the ionosphere, the ionospheric response to the eclipse and its impact on GNSS positioning were investigated using data from the Oregon Real-Time GNSS Network (ORGN). From the dual-frequency GNSS observation, total electron content (TEC) was extracted along the signal ray path between a satellite and a station for observing the abnormality of the ionosphere. From the TEC observations during three sequential daysthe day before, the day of, and the day after the eclipsethe rate of change of TEC (ROT) was derived to analyze the impact of solar eclipse on the ionospheric response. A distinctive reduction of the ROT was found on the day of eclipse. Moreover, the impact of the eclipse on GNSS positioning was examined by conducting an experiment of the baseline processing. Because of the unusual dynamics of the ionosphere during the eclipse, the GNSS positioning error during the event was notably increased. This experiment shows that the eclipse increased the ionospheric gradient between a station in the path and a station outside of the path of totality that significantly degraded the positioning performance.
机译:摘要2017年8月21日的日食经过北美,对电离层中的电子密度产生了重大影响。通过利用全球导航卫星系统(GNSS)监视电离层,使用俄勒冈实时GNSS网络(ORGN)的数据研究了电离层对日食的响应及其对GNSS定位的影响。从双频GNSS观测中,沿着卫星和观测站之间的信号射线路径提取总电子含量(TEC),以观察电离层的异常情况。从日食前,日和日后连续三天的TEC观测值中,得出TEC的变化率(ROT),以分析日食对电离层响应的影响。在日食时发现ROT明显降低。此外,通过进行基线处理实验来检验日食对GNSS定位的影响。由于日食期间电离层的异常动态,该事件期间GNSS的定位误差显着增加。该实验表明,日食增加了路径中的一个站与整体路径之外的一个站之间的电离层梯度,这大大降低了定位性能。

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