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Analysis of a railway power system based on four quadrant converters operating under faulty conditions

机译:基于四象限转换器在故障条件下运行的四象限转换器的铁路电力系统分析

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Long distance European trains are usually powered by a single-phase AC line of 25 kV at 50 Hz. Traditionally a traction drive mainly consists of a single-phase AC/DC converter, a DC-link bus and a three-phase DC/AC PWM converter. In the past, the DC-link bus was obtained through diode rectifiers, which generate line currents with high harmonic distortion and low power factor. In order to reduce these problems, the DC/AC converter is based nowadays on four-quadrant interlaced converters. Taking into account the power involved in electric drive trains, rectifier semiconductors are exposed to high stresses that can lead to failures. However, some types of failures such as power switch open-circuit faults may not be immediately detected and lead to more failures in other power switches. The goal of this work is to investigate the operation of a four quadrant interlaced converter, under normal and faulty conditions. For fault detection purposes, the average rectifier line current will be used. Experimental results are presented.
机译:长距离欧式火车通常由50 Hz的单相交流线路供电。传统上,牵引车主要由单相AC / DC转换器,DC-Link总线和三相DC / AC PWM转换器组成。过去,通过二极管整流器获得DC-Link总线,其产生具有高谐波失真和低功率因数的线电流。为了减少这些问题,DC / AC转换器现在基于四象限隔行交错转换器。考虑到电动驱动列车所涉及的力量,整流半导体暴露于可能导致故障的高应力。但是,可能无法立即检测到某些类型的故障,例如电源开关开关故障,并导致其他电源开关中的更大故障。这项工作的目标是调查四个象限隔行扫描转换器的操作,在正常和故障条件下。对于故障检测目的,将使用平均整流线电流。提出了实验结果。

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