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Stability Research of High-Speed Railway EMUs and Traction Network Cascade System Considering Impedance Matching

机译:考虑阻抗匹配的高速铁路动车组和牵引网串级系统稳定性研究

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摘要

Due to the low-frequency oscillation (LFO) between traction network and electric multiple units (EMUs) of high-speed railway, many traction blockades occur in different EMU depots. Aiming at this problem, the mathematical model and small-signal analysis model of EMUs-traction network cascade system (ETNCS) are built in this paper. The system stability mainly affected by the electrical coupling between source and load module is analyzed and discussed in detail. Considering the autotransformer leakage reactance, traction network impedance, and distributed capacitance, the output source module resistance of ETNCS is calculated based on the generalized symmetrical component method. Using the generalized Nyquist criterion and Bode diagram, the ETNCS's stability is analyzed and the quantitative indicators of system impedance matching are given. Then, the simulation model of full ETNCS is built in this paper, which can reproduce the LFO phenomenon. In addition, the theoretical analysis results and the feasibility of inhibition for LFO are verified based on MATLAB/simulink simulation. Finally, the LFO signal modal analysis is implemented by using Prony and estimating signal parameters via rotational invariance techniques (ESPRIT) methods. The conclusions show that the proposed stability and modal analysis methods could be used not only to analyze the LFO more clearly, but also to provide the technical reference for the stable operation of EMUs.
机译:由于牵引网络与高速铁路电气多单元(EMU)之间的低频振荡(LFO),许多牵引阻塞在不同的EMU仓库中发生。针对这一问题,本文建立了动车组-牵引网级联系统(ETNCS)的数学模型和小信号分析模型。详细分析和讨论了受电源模块和负载模块之间的电耦合影响的系统稳定性。考虑到自耦变压器的泄漏电抗,牵引网络阻抗和分布电容,基于广义对称分量法计算了ETNCS的输出源模块电阻。利用广义的奈奎斯特准则和伯德图,分析了ETNCS的稳定性,给出了系统阻抗匹配的定量指标。然后,建立了完整的ETNCS仿真模型,可以重现LFO现象。另外,基于MATLAB / simulink仿真,验证了理论分析结果和抑制LFO的可行性。最后,通过使用Prony并通过旋转不变技术(ESPRIT)方法估计信号参数来实现LFO信号模态分析。结论表明,所提出的稳定性和模态分析方法不仅可以更清晰地分析低频振荡器,而且可以为动车组的稳定运行提供技术参考。

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