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Study of the Track–Train Continuous Information Transmission Process in a High-Speed Railway

机译:高速铁路轨道火车连续信息传输过程研究

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In the experiments and practical applications in a high-speed railway, it is observed that the carrier frequency of the sampled signal in a track circuit reader (TCR) is changed with train speed and goes beyond the upper permissive range prescribed for a jointless track circuit (JTC) in some cases. This can directly affect the availability of train target speed in train control systems and thus has an effect on the generation of the distance-to-go profile. It not only reduces the safety and efficiency of train traveling but also limits the improvement of train speed. To find the primary cause of the deviation in carrier frequency of the sampled signal in TCR (CFSST), this paper models the track-to-train continuous information transmission process using the transmission line theory based on the structures and principles of JTC and TCR. Then, the relation between the deviation in CFSST and the train speed is derived. Experimental results in high-speed railway have verified the correctness of the analysis, and the study can provides a strong theoretical basis for improving the safety level of railway traffic. Moreover, it can be a good reference for other countries where the similar track circuits are applied.
机译:在高速铁路的实验和实际应用中,可以看到,轨道电路读取器(TCR)中采样信号的载波频率会随着列车速度而变化,并且超出了无接缝轨道电路所规定的上限范围(JTC)在某些情况下。这可以直接影响列车控制系统中列车目标速度的可用性,并因此影响待行驶距离轮廓的生成。它不仅降低了火车行驶的安全性和效率,而且限制了火车速度的提高。为了找出TCR(CFSST)中采样信号的载波频率偏差的主要原因,本文基于JTC和TCR的结构和原理,利用传输线理论对轨道到火车的连续信息传输过程进行建模。然后,得出CFSST中的偏差与列车速度之间的关系。高速铁路的试验结果证明了该分析方法的正确性,为提高铁路交通安全水平提供了有力的理论依据。此外,它对于使用类似轨道电路的其他国家可能是一个很好的参考。

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