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Accounting for the differential inter-system bias (DISB) of code observation in GPS+BDS positioning

机译:考虑到GPS + BDS定位中代码观测的差分系统间偏差(DISB)

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摘要

If the associated differential inter-system biases (DISBs) are priori known, only one common reference satellite is sufficient, which is called the inter-system model. The inter-system model can help to maximize the redundancy of the positioning model, and thus can improve the positioning performance, especially in harsh environment. However, in practice use not all receivers can be calibrated with DISBs in advance. In this paper, taking combined GPS and BDS pseudorange positioning as the example, we compare three positioning models and their positioning performance. One is traditional intra-system model, and the other two belongs to the inter-system models, i. e. the model with calibration of DISB and the model with real-time estimation of DISB parameter. Positioning performance using the three models is evaluated with simulated obstructed environments. It will be shown that besides the model with calibration of DISB, the model with real-time estimation of DISB parameter can also effectively improve positioning accuracy and reliability compared with the traditional intra-system model, especially for the severely obstructed environment with only a few satellites observed. When no more than 7 satellites visible, the positioning accuracies in each directions can be improved by no less than 15%. The proposed model can be used alternatively when no priori DISB calibration is available.
机译:如果预先知道相关的差分系统间偏差(DISB),则只有一个公共参考卫星就足够了,这被称为系统间模型。系统间模型可以帮助最大化定位模型的冗余度,从而可以提高定位性能,尤其是在恶劣的环境下。但是,在实际使用中,并非所有接收器都可以事先通过DISB进行校准。本文以GPS和BDS伪距组合定位为例,比较了三种定位模型及其定位性能。一个是传统的系统内模型,另外两个属于系统间模型,即。 e。带有DISB校准的模型和带有DISB参数实时估计的模型。使用这三种模型的定位性能是在模拟障碍环境下进行评估的。结果表明,与传统的系统内部模型相比,除具有DISB校准的模型外,具有DISB参数实时估计的模型还可以有效地提高定位精度和可靠性,特别是对于只有少数几个严重阻塞环境的情况观察到的卫星。当可见的卫星不超过7个时,每个方向的定位精度可提高不小于15%。当没有先验DISB校准可用时,可以替代地使用建议的模型。

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