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Numerical simulation and measurement of common-mode and circulating bearing currents

机译:共模和循环轴承电流的数值模拟与测量

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Steep wavefront voltages of pulse width modulated (PWM) inverters cause common-mode (CM) bearing currents due to the capacitive coupling between stator windings and rotor core. The CM bearing currents represent a current unbalance of the three-phase winding system producing a high-frequency (HF) magnetic flux around the motor shaft that induces the so-called circulating bearing currents. The circulating currents flow through the electrically conductive loop consisting of the motor shaft, bearings and stator frame. Both the bearing current components cause bearing material corrosion and early mechanical failure. This paper presents a method for computing the bearing currents based on advanced 2-D and 3-D electromagnetic field simulations for obtaining the parameters of a detailed motor equivalent circuit. The suggested methodology was tested on a chosen synchronous motor and the obtained results were verified by comparison with measurements.
机译:脉冲宽度调制(PWM)逆变器的陡峭波前电压导致由于定子绕组和转子芯之间的电容耦合而导致共模(CM)承载电流。 CM承载电流表示三相绕组系统的电流不平衡,其在电动机轴周围产生高频(HF)磁通量,该电机轴诱导所谓的循环承载电流。循环电流通过由电动机轴,轴承和定子框架组成的导电环。轴承电流部件都导致轴承材料腐蚀和早期机械故障。本文介绍了一种用于基于先进的2-D和3-D电磁场模拟计算承载电流,用于获得详细电动机等效电路的参数。在选择的同步电动机上测试了建议的方法,通过与测量进行比较来验证所得结果。

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