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A Train Integrity Monitoring Method Based on GNSS Moving Baseline Resolution

机译:基于GNSS移动基线分辨率的列车完整性监测方法。

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The traditional train integrity monitoring (TIM) is realized by the wayside equipment like track circuit. However, its shortcomings in high setup and maintenance costs limit further development. In this paper, a novel TIM method based on Global Navigation Satellite System (GNSS) moving baseline is proposed. In this method, the double-difference (DD) algorithm is applied to mitigate the GNSS propagation errors and clock biases to improve the accuracy. Then the DD carrier phase is input as measurement to Kalman filter, which is used to dynamically estimate the length of moving baseline. In order to evaluate the performance of proposed method, a real experiment was conducted on Beijing-Shenyang high-speed railway. The experimental results show that the length difference between the calculated moving baseline and the reference is less than 1.5 m in both scenarios, which further prove the effectiveness of the proposed TIM method.
机译:传统的火车完整性监控(TIM)是通过诸如轨道电路之类的路边设备来实现的。但是,其高设置和维护成本的缺点限制了进一步的开发。提出了一种基于全球导航卫星系统(GNSS)移动基线的TIM方法。在这种方法中,采用双差(DD)算法来减轻GNSS传播误差和时钟偏差,以提高准确性。然后将DD载波相位作为测量值输入到Kalman滤波器,该滤波器用于动态估计移动基线的长度。为了评估所提方法的性能,在京沉高速铁路上进行了真实的实验。实验结果表明,在两种情况下,计算的运动基线与参考之间的长度差均小于1.5 m,这进一步证明了所提TIM方法的有效性。

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