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Inverter-fed drive stator insulation monitoring based on reflection phenomena stimulated by voltage step excitation

机译:基于电压阶跃激励引起的反射现象的变频器馈电驱动定子绝缘监测

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Reflected wave transient phenomena in voltages and currents of inverter-fed drives caused by voltage source inverters (VSI) operating with pulse width modulation (PWM) with high dv/dt rates are well known and analyzed in many studies. The reflection phenomena occurring at the machine terminals, resulting in high overvoltages are one reason for the stress and aging mechanism of AC machines insulation system. The motivation of this work arises out of the need for a continuous monitoring of the insulation health state for traction drives systems in order to ensure high reliability of the drive over many years of operation. With a voltage step initiated by a switching transition, the inverter elicits a response in the drive system. By using the information of the resulting transient effects, conclusions can be drawn on basis of the oscillation behavior which are indicative for a change in the insulation system. Investigations in this work show that an alteration in the shape of the system transients, in peak values as well as frequency components, correlates with a dielectric insulation capability of the machine winding insulation. Measurements on a small, low voltage, random wound, induction machine (5.5kW) and a medium voltage induction machine (1.4MW) with form-wound coil based stator system are performed. Artificially induced insulation aging is realized by accelerated thermal aging to demonstrate the effect. Additionally, two different inverter types are used, with standard IGBT modules (dv/dt ~2-4kV/μs) and new SiC semiconductor inverter technology (dv/dt up to 20kV/μs), to analyze the influence of the shape of the excitation voltage step.
机译:由具有高dv / dt速率的脉宽调制(PWM)的电压源逆变器(VSI)引起的逆变器馈电驱动器的电压和电流中的反射波瞬态现象是众所周知的,并在许多研究中进行了分析。电机端子处发生的反射现象会导致高过电压,这是导致交流电机绝缘系统出现应力和老化机制的原因之一。这项工作的动机源于对牵引传动系统的绝缘健康状态进行连续监控的需要,以便确保在多年的运行中传动的高可靠性。通过开关转换引发的电压阶跃,逆变器在驱动系统中引起响应。通过使用所产生的瞬态效应的信息,可以基于振荡行为得出结论,这些结论表明绝缘系统发生了变化。这项工作的研究表明,系统瞬变的形状,峰值以及频率分量的变化与电机绕组绝缘的介电绝缘能力有关。在带有基于绕线线圈的定子系统的小型,低压,随机缠绕感应电机(5.5kW)和中压感应电机(1.4MW)上进行了测量。通过加速热老化来实现效果,从而实现了人为诱发的绝缘老化。此外,还使用了两种不同的逆变器类型,包括标准的IGBT模块(dv / dt〜2-4kV /μs)和新的SiC半导体逆变器技术(dv / dt高达20kV /μs),以分析形状的影响。励磁电压阶跃。

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