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Passive Filter Design for China High-Speed Railway With Considering Harmonic Resonance and Characteristic Harmonics

机译:考虑谐波谐振和特征谐波的中国高速铁路无源滤波器设计

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In order to make high-speed trains (HSTs) lighter and more reliable, LC or LCL high-pass filters, which are widely adopted to mitigate high-order harmonics, are not installed in most of China HSTs. Therefore, the harmonic problem is a concern, because of the significant adverse impacts it has on the tractive drive system of the train and power quality of the utility system. The harmful harmonic distortions in high-speed railways (HSRs) are mainly caused by harmonic resonance and massive characteristic harmonics emission. This paper presents the results of harmonic assessment and harmonic filter design for a typical HSR line in China. Harmonic penetration analysis (HPA) is implemented and carried out to determine the harmonic distorted types for a wide range of possible train-operating conditions in a timetable. Both statistical field test and numerical calculation are used in passive filter design for HSRs. A C-type filter is designed here to address these typical harmonic distortions. The studies will be validated by detailed simulations based on the train timetable by counting the 95% index of the 24-h profile of harmonic results.
机译:为了使高速列车更轻巧,更可靠,在中国大多数高速列车中并未安装被广泛采用以减轻高次谐波的LC或LCL高通滤波器。因此,谐波问题是一个令人关注的问题,因为它对列车的牵引传动系统和公用事业系统的电能质量具有重大的不利影响。高速铁路(HSR)中有害的谐波失真主要是由谐波谐振和大量特征谐波发射引起的。本文介绍了中国典型高铁线路的谐波评估和谐波滤波器设计结果。实施并执行谐波渗透分析(HPA),以确定时间表中各种可能的列车运行条件下的谐波失真类型。统计现场测试和数值计算都用于HSR的无源滤波器设计中。这里设计了一个C型滤波器来解决这些典型的谐波失真。这些研究将通过基于列车时刻表的详细模拟得到验证,方法是对谐波结果的24小时配置文件中的95%指标进行计数。

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