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首页> 外文期刊>IEE Proceedings. Part B >Remote short-circuit current determination in DC railway systems using wavelet transform
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Remote short-circuit current determination in DC railway systems using wavelet transform

机译:基于小波变换的直流铁路系统远程短路电流确定

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For effective protection of DC railway systems, it is important to discriminate the remote short-circuit current from the train starting current. Four methods for the discrimination are assessed. The first two methods apply the traditional heuristics by comparing the magnitude and the rate of change (di/dt) between the two currents. The remaining methods use the Fourier and wavelet transforms. It is shown that the first three methods do not provide consistent discrimination. The remote short-circuit current is determined mainly by the steel rail impedance, which is time varying due to the skin effect. In contrast, impedances of the traction motor and the contact wires, and the change of operating mode during starting govern the train starting current. The wavelet transform identifies these salient features. The remote short-circuit current is simulated using EMTP, and a SIMULINK model is used to obtain the train starting current.
机译:为了有效保护直流铁路系统,将远程短路电流与列车启动电流区分开是很重要的。评估了四种区分方法。前两种方法通过比较两个电流之间的大小和变化率(di / dt)来应用传统的启发式方法。其余方法使用傅立叶和小波变换。结果表明,前三种方法不能提供一致的区分。远程短路电流主要由钢轨阻抗决定,该阻抗由于集肤效应而随时间变化。相反,牵引电动机和接触线的阻抗以及起动过程中运行模式的变化控制着火车的起动电流。小波变换识别这些显着特征。使用EMTP模拟远程短路电流,并使用SIMULINK模型获取列车的启动电流。

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