交流牵引网EMI监测系统参数的选择

IF 0.9 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC
V. Havryliuk
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引用次数: 0

摘要

确保牵引网络与铁路信号线的电磁兼容性(EMC)的问题具有实际意义,因为来自牵引网络的电磁干扰(EMI)会导致信号系统出现故障。为了确保轨道电路的牵引电流的EMC,轨道电路被广泛用作移动列车前方的轨道空位传感器,根据其维护计划定期监测轨道中的EMI,这使得能够及时检测到轨道中干扰水平的过度增加,并防止信号系统中可能出现的故障。开发用于牵引网谐波连续监测的嵌入式系统的问题在于,需要根据标准的严格要求,确保牵引网干扰监测系统的必要测量精度。由于牵引电流是一个非平稳随机过程,因此很难正确选择控制系统参数。此外,交流牵引电流具有大的谐波值的动态范围,它们彼此接近并接近强大的基波,以及离散傅立叶变换中固有的局限性,这些局限性与不可能同时提高时域和频域中的测量精度有关。这导致在选择监测系统的参数时需要折衷。该工作致力于应用模数转换理论和窗口傅立叶变换,开发一种正确选择牵引线EMI监测系统参数的技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Choice of the Parameters of an EMI Monitoring System for an AC Traction Network
The problem of ensuring the electromagnetic compatibility (EMC) of the traction network with railway signaling lines is of practical interest, since electromagnetic interference (EMI) from the traction network can cause malfunctions in the signaling systems. In order to ensure the EMC of traction current with track circuits, which are widely used as track vacancy sensors in front of a moving train, EMI in rails is periodically monitored in accordance with their maintenance schedule, which makes it possible to detect excessive increases in the level of interference in the rails in a timely manner and prevent possible failures in signaling systems. The problem of developing embedded systems for continuous monitoring of harmonics in the traction network lies in the need to ensure the necessary measurement accuracy of the interference monitoring system for a traction network in accordance with the strict requirements of standards. The correct choice of control system parameters is difficult because the traction current is a nonstationary random process. In addition, the alternating traction current has a large dynamic range of harmonic values, with their proximity to each other and to a powerful fundamental harmonic, as well as the limitations inherent in the discrete Fourier transform, associated with the impossibility of simultaneously improving the accuracy of measurements in the time and frequency domains. This leads to the need for compromises when choosing the parameters of the monitoring system. The work is devoted to the practice of applying the theory of analog-to-digital conversion and the windowed Fourier transform to develop a technique for correctly choosing the parameters of an EMI monitoring system for traction lines.
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