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Insulation condition monitoring of traction drives based on transient current signal resulting from differential and common mode excitation

机译:基于差动和共模激励产生的瞬态电流信号对牵引驱动器的绝缘状态进行监控

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In this work a method to detect stator insulation degradation of traction drives based on analyses of the transient current reaction caused by inverter switching is proposed. Two simple excitation methods are proposed to analyze the state of the inter-turn insulation as well as the groundwall insulation. With the standard hall-effect based closed loop current transducers used for the control of the machine as well, the transient signal ringing resulting from a switching transition of the inverter is analyzed. Based on a comparative monitoring method the transient part of the current response is analyzed to extract an insulation state indicator of the winding system. The approach is tested with a SiC-MOSFET inverter prototype as a source of excitation. Due to fast switching of the voltage source inverter and high output voltage dv/dt rates, the motor windings suffer under increased stress that leads to insulation degradation. With the ability to change the effective gate resistance small dv/dt variations and their influence on the proposed method is analyzed. The method is tested with 1.4MW and 5.5kW induction machines.
机译:在这项工作中,提出了一种基于对逆变器开关引起的瞬态电流反应的分析来检测牵引传动的定子绝缘性能退化的方法。提出了两种简单的激励方法来分析匝间绝缘以及接地绝缘的状态。还将标准的基于霍尔效应的闭环电流传感器也用于电机的控制,分析了由逆变器的开关转换引起的瞬态信号振铃。基于比较监视方法,分析电流响应的瞬态部分,以提取绕组系统的绝缘状态指示器。该方法已使用SiC-MOSFET逆变器原型作为激励源进行了测试。由于电压源逆变器的快速切换和高输出电压dv / dt率,电动机绕组承受的应力增加,导致绝缘性能下降。通过改变有效栅极电阻的能力,可以分析出较小的dv / dt变化及其对所提出方法的影响。该方法在1.4MW和5.5kW感应电机上进行了测试。

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