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Detection and Localization of Insulation Deterioration in Traction Drives Based on Specific High Frequency Current Response Evaluation

机译:基于特定高频电流响应评估的牵引驱动器绝缘劣化的检测与定位

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In modern electric traction drives, on-line monitoring offers the advantage to decrease maintenance cost and in-crease the reliability. Especially, the electrical insulation is one of the most vulnerable components of an ac machine. Fast switching of the inverter results in high output voltage slew rates increasing the stress on the insulation as well as the rate of deterioration. The described stator insulation monitoring technique detects imminent deviations from a healthy stator insulation state by evaluation of the current response induced by inverter switching. Effects occurring during the aging of the insulation, e.g. changes of electrical parasitic components, lead to deviations in the transient current oscillation. Since the degradation of the insulation is usually a slowly developing process, the observation of the insulation condition is possible during operation and when the drive is put into service and continuing over the whole lifetime. The target of the approach is to detect the insulation degradation in an incipient stage. In order to operate the monitoring system economically, conventional current transducers typically used in industrial applications are used. Experimental results of a 1.4 MW induction machine for railway applications, fed by inverters with different semiconductor technologies (IGBT, SiC-MOSFET) are presented.
机译:在现代电动牵引驱动器中,在线监测提供了降低维护成本和折扣可靠性的优势。特别是,电绝缘是AC机器最脆弱的部件之一。逆变器的快速切换导致高输出电压转换速率,从而提高了绝缘的应力以及劣化速度。所描述的定子绝缘监测技术通过评估逆变器切换引起的电流响应来检测与健康定子绝缘状态的迫在眉睫的偏差。例如,在绝缘老化期间发生的影响,例如,电气寄生成分的变化导致瞬态电流振荡中的偏差。由于绝缘的劣化通常是缓慢的开发过程,因此在操作期间可以观察绝缘条件,并且当驱动器投入使用并继续整个寿命时。该方法的目标是检测初期阶段的绝缘降解。为了经济地操作监控系统,使用通常用于工业应用中的常规电流换能器。呈现了用不同半导体技术(IGBT,SIC-MOSFET)的逆变器供给的1.4 MW感应机的1.4 MW诱导机的实验结果。

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