An Approach to Suppress Low-frequency Oscillation in Electrification Railway Based on TCSC Impedance Control

Chao Yao, Xiaojun Wang, Chengjie Bi, Yizhi Zhang, Cheng Jin
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引用次数: 1

Abstract

Low-frequency oscillation (LFO) occurs in electrification railway system from time to time, which can lead to traction blockades in electric multiple unit (EMU) depots. When the impedance between the traction network and locomotives in the electrical coupling system does not match, the stability of the electrical coupling system will deteriorate and LFO will occur. There have been some suppression methods from the train side. However, the control strategy and parameters of the electric train is usually complicated and confidential, so these methods from the train side are generally complicated and not entirely practical. Nevertheless, based on impedance matching criterion, the paper proposes an approach to suppress LFO in the traction network of high-speed railway, utilizing Thyristor Controlled Series Compensation (TCSC) in the traction network side. And the effectiveness is verified with MATLAB/Simulink simulations.
基于TCSC阻抗控制的电气化铁路低频振荡抑制方法
电气化铁路系统中经常发生低频振荡,导致动车组车辆段发生牵引阻塞。当电耦合系统中牵引网络与机车之间的阻抗不匹配时,电耦合系统的稳定性会变差,产生LFO。从列车一侧有一些抑制方法。然而,电动列车的控制策略和参数通常是复杂和保密的,因此这些方法从列车方面来说通常是复杂的,并不完全实用。然而,基于阻抗匹配准则,本文提出了一种抑制高速铁路牵引网络LFO的方法,即在牵引网络侧利用晶闸管控制串联补偿(TCSC)。通过MATLAB/Simulink仿真验证了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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