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Code-Carrier Divergence for Ground Based Augmentation System: A comparative analysis study

机译:地面增强系统的码载散度:对比分析研究

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Carrier-Smoothed-Code (CSC) can effectively suppress the multipath effect and receiver noise in the code-based differential positioning, which is widely adopted by the Ground Based Augmentation System (GBAS). However, the accuracy of smoothed code can be degraded significantly by the Code-Carrier-Divergence (CCD) effect. The CCD monitoring technology of for BeiDou Satellite System (BDS) is still under developing. This paper analyzed and compared two methods of CCD monitoring in GPS and BDS, respectively. Based on the CCD monitoring results, it was found that the tow-order linear invariant filter is better for CCD in terms of detection time and estimation accuracy. With the given constant false alarm rate, CCD detection threshold can be obtained. Furthermore, the sigma-inflation method is used to compensate the non-perfect distribution of the constructed test statistics. The real-world experiment of GPS and BeiDou is implemented to make a comparative analysis. The experimental result shows that the two-order detection method is more applicable to BDS due to the better availability.
机译:载波平滑码(CSC)可以有效地抑制基于代码的差分定位中的多径效应和接收器噪声,这已被地面增强系统(GBAS)广泛采用。但是,平滑的代码的准确性可能会因代码载波扩散(CCD)效应而大大降低。北斗卫星系统(BDS)的CCD监视技术仍在开发中。本文分别分析比较了GPS和BDS的两种CCD监测方法。根据CCD的监测结果,发现二阶线性不变滤波器在CCD的检测时间和估计精度方面都更好。在给定的恒定误报率下,可以获得CCD检测阈值。此外,使用sigma-inflation方法来补偿构造的测试统计信息的非完美分布。进行了GPS和北斗的真实世界实验,以进行比较分析。实验结果表明,由于具有更好的可用性,二阶检测方法更适用于BDS。

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