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Analysis and Evaluation of Suppression Methods on Low-Frequency Oscillation in Electric Railways

机译:电气铁路低频振荡抑制方法的分析与评价

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In recent years, low-frequency oscillations of railway electrification systems caused by improper electric matching between high-speed trains and traction power supply systems have occurred frequently, which has a severe impact on the electrified railway. The research of the oscillations mechanism is very important to ensure power supply quality and stable operation of traction power supply system. In this paper, the traction network and train coupling model is established and the phenomenon of the low-frequency oscillations of railway electrification systems is reproduced, and the instantaneous power characteristics is analyzed. Then, the factors of the stability are analyzed according to the method of impedance ratio criterion. Three kinds of inhibition measures are analyzed through simulation verification, and concludes that low-pass filter feedback damping compensation is more advantageous. The work of this paper provides theoretical support for the actual governance of the low-frequency oscillation of the traction network and train coupling system in the electrified railway.
机译:近年来,经常发生由高速列车和牵引电源系统之间的不正确电匹配引起的铁路电气化系统的低频振荡,这对电气化铁路产生了严重影响。振荡机制的研究非常重要,可以确保供电质量和牵引电源系统的稳定运行。本文建立了牵引网络和火车耦合模型,再现了铁路电气化系统的低频振荡现象,分析了瞬时功率特性。然后,根据阻抗比标准的方法分析稳定性的因素。通过仿真验证分析三种抑制措施,并得出结论,低通滤波器反馈阻尼补偿更有利。本文的工作为牵引网络和火车耦合系统的实际治理提供了理论支持,以及电气化铁路中的火车耦合系统。

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