PPP Performance with Large TEC Gradient and Mitigation Methods

Yan Xiang, Wei Wang, Xin Chen, Wenxian Yun
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Abstract

During high-level solar activity time, frequent ionospheric irregularities lead to large total electron content (TEC) gradient. precise point positioning (PPP) performance can be significantly degraded under the unfavorable ionosphere conditions. We analyze the causes and effects of the ionosphere potential impacts on uncombined PPP (UPPP) performance in terms of the ionospheric stochastic model, blunders, and frequent cycle slips. Results show that a large enough stochastic variance is beneficial for better positioning solutions; blunders detection could improve the accuracy; a proper threshold to detect cycle slips could improve the accuracy significantly. Taking these effects into consideration, we can achieve a centimeter accuracy at each direction under the disturbed ionosphere conditions.
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具有大TEC梯度的PPP性能和缓解方法
在太阳活动高峰期,频繁的电离层异常导致总电子含量(TEC)梯度大。在不利的电离层条件下,精确点定位(PPP)性能会显著下降。本文从电离层随机模式、误差和频繁的周期跳变等方面分析了电离层对UPPP (uncombined PPP)性能的潜在影响。结果表明,足够大的随机方差有利于更好的定位方案;错误检测可以提高准确率;采用合适的阈值检测周跳可以显著提高检测精度。考虑到这些影响,在电离层扰动条件下,我们可以在每个方向上达到厘米的精度。
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