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Development and performance analysis of a novel impedance bond for railway track circuits

机译:新型铁轨线路阻抗键的研制与性能分析

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The ZPW-2000 track circuit is the dominant track circuit system used in China. On standard plain line track it is used as a jointless track circuit where `tuned zones?? are used to separate adjacent tracks operating at different frequencies. Owing to the complexities of station layouts it is not possible to use the ZPW-2000 as a jointless track circuit within stations, so a solution incorporating mechanical joints is commonly used. The station environment is known to have high levels of electromagnetic interference, and such environments can cause interference in the track circuit resulting in signal degradation and failure. An integrated solution that allows the ZPW-2000 track circuit to be used dependably in jointed operation that is able to cope with the electromagnetic environment found in stations is therefore required. In this study, a solution based on impedance bonds is developed to alleviate interference problems with the ZPW-2000 in harsh electromagnetic environments. The study presents an innovative design of impedance bond incorporating an air gap transformer and a double function filter circuit. The impedance bond was found to have an impedance of below 0.01 :9; at the resonant frequency of 50 Hz, and in excess of 17 :9;at other signal frequencies. The impedance bond is shown to eliminate interference while meeting the requirements of signal transmission on rail tracks. In this study, both theoretical analysis and the results of laboratory tests are presented.
机译:ZPW-2000轨道电路是中国使用的主要轨道电路系统。在标准的明线轨道上,它用作“调谐区”的无接缝轨道电路。用于分离以不同频率运行的相邻轨道。由于工位布局的复杂性,不可能将ZPW-2000用作工位内的无缝线路,因此通常使用结合机械接头的解决方案。已知站环境具有高水平的电磁干扰,并且这种环境会在跟踪电路中引起干扰,从而导致信号劣化和故障。因此,需要一种集成解决方案,该解决方案要求ZPW-2000跟踪电路可靠地用于联合运行中,该联合运行能够应对站点中发现的电磁环境。在这项研究中,开发了一种基于阻抗键的解决方案来缓解ZPW-2000在恶劣电磁环境中的干扰问题。这项研究提出了一种创新的阻抗结合设计,结合了气隙变压器和双功能滤波器电路。发现该阻抗键的阻抗低于0.01:9。在50 Hz的谐振频率下并超过17:9;在其他信号频率下。示出了阻抗结合,可以消除干扰,同时满足在轨道上传输信号的要求。在这项研究中,既提供了理论分析又提供了实验室测试的结果。

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