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Influence of circuit parameters on the electric discharge machining of the bearings of a PWM inverter driven motor

机译:电路参数对PWM逆变器驱动电动机轴承电气放电加工的影响

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In inverter motor drives an increasing fraction of faults is associated to the bearings damages induced by circulating currents. In particular, the capacitive couplings between the stator and the rotor give rise to a shaft voltage which, in turn, may produce the breakdown of the lubricating film in the bearings and the associated Electric Discharge Machining (EDM) currents. By using an accurate circuital model for an inverter-driven induction motor for traction applications such damaging mechanisms, the statistical occurrence of the discharges and the associated energy level are evaluated. In order to investigate the relations among the currents amplitude and frequency and the influencing parameters of the drive, such as the cable length, the geometrical and physical characteristics affecting the bearings impedance, the Response Surface Method is applied. The most influencing parameter, the sensitivity level and the mutual effects induced by the parameters variations are obtained. The resulting information can be used in the design phase. The same approach can be applied also for correlating different performances of the motor with further influencing parameters.
机译:在逆变电动机驱动器中,越来越多的故障与通过循环电流引起的轴承损坏相关。特别地,定子和转子之间的电容耦合导致轴电压,轴电压又可以在轴承中产生润滑膜的损坏和相关的放电加工(EDM)电流。通过使用用于逆变器驱动的感应电动机的精确的电路模型,用于牵引应用这种损坏机构,评估放电的统计发生和相关的能量水平。为了研究电流幅度和频率的关系以及驱动的影响参数,例如电缆长度,影响轴承阻抗的几何和物理特性,施加响应面方法。获得最大的参数,参数变化引起的灵敏度水平和相互效应。得到的信息可用于设计阶段。相同的方法也可以应用于与进一步影响参数的电动机的不同性能相同。

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