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首页> 外文期刊>Journal of Geodesy >A 4D tomographic ionospheric model to support PPP-RTK
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A 4D tomographic ionospheric model to support PPP-RTK

机译:支持PPP-RTK的4D层析电离层模型

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摘要

Successful implementation of integer ambiguity resolution enabled precise point positioning (aka PPP-RTK) algorithms is inextricably linked to the ability of a user to perform near real-time positioning by quickly and reliably resolving the integer carrier-phase ambiguities. In the PPP-RTK technique, a major barrier to successful ambiguity resolution is the unmodelled impact of the ionosphere. We present a 4D ionospheric tomographic model that computes in real time the ionospheric electron density as a linear combination of basis functions, namely B-splines. The results show that when the ionospheric estimates are provided as atmospheric corrections for a PPP-RTK end-user, the time to fix its horizontal position below 10 cm is around 20 epochs (the sample rate is 30 s) at the 90% of the cumulative distribution function (CDF), as opposed to the time it takes when no external corrections are provided, which is around 80 epochs at 90% of the CDF.
机译:成功实现整数模糊度分辨率的精确点定位(aka PPP-RTK)算法与用户通过快速可靠地解决整数载波相位模糊度执行近实时定位的能力密不可分。在PPP-RTK技术中,成功解决歧义性的主要障碍是电离层的无模型影响。我们提出了一种4D电离层层析成像模型,该模型可以实时计算电离层电子密度,将其作为基本函数(即B样条)的线性组合。结果表明,当提供电离层估计值作为PPP-RTK最终用户的大气校正时,在90%的采样率下,将其水平位置固定在10 cm以下的时间约为20个纪元(采样率为30 s)。累积分布函数(CDF),与没有提供外部校正的时间相反,在CDF的90%时约为80个纪元。

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