GPS . NET RTK的对流层延迟模型

Qiu Lei, L. Lei, W. Zemin
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引用次数: 7

摘要

基于网络的GPS技术提供了广泛的实时运动学校正范围。大气折射误差是影响远程RTK模糊度分辨率和精度的主要因素。但是,由于对流层延迟具有很强的空间相关性,参考平面与测量站之间的高差会引起系统对流层误差的偏差,从而降低对流层校正的精度。本文提出了一种新的基于神经网络的对流层误差模型。神经网络模型不仅考虑了高度因素,而且考虑了海拔因素。在空间空间中建立模型。实验结果表明,无论网络中的插值点还是网络中的插值点,对流层延迟模型的精度都在5cm以内。
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An Tropospheric Delay Model for GPS NET RTK
The network-based GPS technique provides a broad Spectrum of corrections for real-time kinematic. And the atmospheric refraction error is the main factors to be sufficient to support the ambiguity resolution (AR) and accuracy of the long-distance RTK. However, due to the strong spatial correlated of the tropospheric delay, the elevation difference between the reference plane and the rove station will cause the deviation of tropospheric error in the system so that the accuracy of troposphere correction will be lowered. In this paper, a new tropospheric error model based on neural network is presented. The neural network model takes into account not only the level factors, but also the elevation factor. It establishes the model in the spatial space. And the experimental results show that the accuracy of tropospheric delay model is within 5cm regardless of interpolation points in the network or network.
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