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首页> 外文期刊>The Journal of Navigation >Assessment and Mitigation of Ionospheric Disturbance Effects on GPS Accuracy and Integrity
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Assessment and Mitigation of Ionospheric Disturbance Effects on GPS Accuracy and Integrity

机译:评估和缓解电离层扰动对GPS精度和完整性的影响

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摘要

Ionospheric disturbances affect Global Positioning System (GPS) performance in terms of accuracy and integrity, especially over the equatorial region. During the period of the disturbances, GPS receivers suffer from a high noise level. Not taken into account by the current stochastic model, the ionospheric disturbances degrade GPS positioning accuracy. In addition, non-Gaussian tails are observed in the distribution of the noise during the period of the disturbances; therefore the integrity of GPS can also be affected. This paper develops a statistical solution that is able to mitigate effects of ionospheric disturbances on GPS accuracy and integrity using a commercial dual frequency receiver. The Rate of Total Electron Content (TEC) change Index (ROTI), a parameter derived from the dual frequency receiver, is used to group the levels of ionospheric disturbances. The standard deviations of the pseudorange noise under different groups are evaluated. By incorporating both the ROTI and the satellite elevation, a modified stochastic model is proposed to reduce the effect of the disturbed observation on the positioning accuracy. The performance of the model is evaluated by a test and an inflated sigma for each group is recommended for over-bounding anomalies of observations to protect the user against threats from ionospheric disturbances. This technique, together with results in this paper, can be applied to mitigate the effects of ionospheric disturbances on GPS.
机译:电离层干扰会影响全球定位系统(GPS)的准确性和完整性,尤其是在赤道地区。在干扰期间,GPS接收器遭受高噪声级别的困扰。当前的随机模型未考虑到电离层干扰会降低GPS定位精度。另外,在扰动期间,在噪声的分布中观察到非高斯尾部。因此,GPS的完整性也会受到影响。本文开发了一种统计解决方案,该解决方案能够使用商用双频接收机减轻电离层干扰对GPS精度和完整性的影响。总电子含量比率(TEC)的变化指数(ROTI)是从双频接收器得出的参数,用于对电离层扰动水平进行分组。评估了不同组下伪距噪声的标准偏差。通过将ROTI和卫星标高结合起来,提出了一种改进的随机模型,以减少干扰观测对定位精度的影响。该模型的性能通过测试进行评估,并且建议对每个组使用高倍的sigma来进行观测值的越界异常,以保护用户免受电离层干扰的威胁。这项技术以及本文的结果可用于减轻电离层扰动对GPS的影响。

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