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Numerical characterization of electrical stresses on dielectric grease of rolling bearings in induction motors fed by PWM inverters

机译:PWM逆变器进料电动机中滚动轴承电介质油脂的数值表征

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Pulsewidth modulated (PWM) inverters are one of the major causes of motor bearing failure in inverter-motor drive systems. The new switching devices, such as the IGBT's, characterized by high switching frequencies and faster switching times, on one side have increased the efficiency, performance and controllability of adjustable speed drives but, on the other side, have brought some relevant drawbacks. In fact, the output voltage from the inverter is not purely sinusoidal and, in particular, steep front pulses can be generated in correspondence to the commutations of switching devices. The presence of high frequency harmonics causes an uneven voltage distribution along motor windings, producing critical stresses on the motor electrical insulation; furthermore the steep pulses can excite the capacitive coupling between the stator and the rotor, resulting in shaft voltages. The latter may cause the breakdown of the lubricating film in the bearings, and the associated electric discharge machining (EDM) currents can damage the bearing and reduce its lifetime. For design purposes it seems of major importance to predict the electrical stresses on the lubricating film of rolling bearings. The present paper is dedicated to the presentation of results of numerical simulations carried out on a traction motor obtained by implementing a Multiconductor Transmission Line (MTL) model of the overall system composed of the power voltage, the feeding cable, the motor stator winding, the rotor shaft and the bearings. The influence on the shaft voltages of parameters like the amplitude and slew rate (dV/dt) of the applied voltage, the cable length, is discussed.
机译:脉冲宽度调制(PWM)逆变器是逆变电机驱动系统中电机轴承故障的主要原因之一。新的交换设备(如IGBT)的特征在一起,在一侧具有高开关频率和更快的切换时间,可以提高可调速度驱动器的效率,性能和可控性,但另一方面带来了一些相关的缺点。事实上,来自逆变器的输出电压不是纯粹的正弦曲线,并且特别地,可以对应于开关装置的换向来产生陡峭的前脉冲。高频谐波的存在导致沿电机绕组的不均匀电压分布,在电动机电绝缘体上产生临界应力;此外,陡峭的脉冲可以激发定子和转子之间的电容耦合,从而导致轴电压。后者可能导致轴承中的润滑膜的击穿,并且相关的电气放电加工(EDM)电流会损坏轴承并减少其寿命。为了设计目的,它似乎是预测滚动轴承润滑膜上的电应力似乎是重要的。本文专用于通过实现由电源电压,供给电缆,电动机定子绕组的整体系统的多导体传输线(MTL)模型而获得的牵引电动机上进行的数值模拟结果的呈现。转子轴和轴承。讨论了对施加电压的幅度和转换速率(DV / DT)的参数的影响,电缆长度。

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