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Increasing accuracy of winding insulation state indicator of three phase inverter-fed machines using two current sensors only

机译:仅使用两个电流传感器的三相逆变器电机的绕组绝缘状态指示器的精度提高

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In modern traction drives the application of monitoring systems is growing to ensure continuous operability. Because of the voltage source inverters (VSI) and the high steep voltage change (dv/dt), increased stress of the winding insulation exist. Stator insulation faults are common reasons for a machine breakdown. Insulation health state can be examined by evaluating the transient reaction to a voltage step excitation. Using the inverter as a source of excitation, it is possible to perform an insulation test by evaluating the resulting transient current sensor signals. The trace of the machines transient current reaction depends on the state of the winding insulation system. If insulation degradation occurs the parameters like the parasitic winding capacitances are changing and influencing the trace of the ringing. Normally, for a three phase AC machine the state of every phase is analyzed with the corresponding current sensor. However, regarding the economic issue, the usage of system resources and additional components is restricted. With the proposed method the evaluation of the stator insulation condition is possible only with two current sensors. The state of the phase without a sensor can be analyzed by a special excitation sequence without significant deterioration of sensitivity compared to the results if a sensor is available. Because the transient reaction of non-excited phases is very small, enhanced signal preprocessing is required to prevent sensitivity losses.
机译:在现代牵引驱动器中,监控系统的应用在不断增长,以确保持续的可操作性。由于电压源逆变器(VSI)和高陡峭的电压变化(dv / dt),绕组绝缘的应力会增加。定子绝缘故障是机器故障的常见原因。可以通过评估对电压阶跃激励的瞬态反应来检查绝缘健康状态。使用逆变器作为激励源,可以通过评估最终的瞬态电流传感器信号来执行绝缘测试。电机瞬态电流反应的轨迹取决于绕组绝缘系统的状态。如果发生绝缘劣化,则诸如寄生绕组电容之类的参数将发生变化并影响振铃的轨迹。通常,对于三相交流电机,使用相应的电流传感器分析每相的状态。但是,关于经济问题,系统资源和其他组件的使用受到限制。利用所提出的方法,仅使用两个电流传感器就可以评估定子绝缘状况。没有传感器的相状态可以通过特殊的激励序列进行分析,与使用传感器的结果相比,灵敏度不会显着降低。由于非激励相的瞬态反应非常小,因此需要增强信号预处理来防止灵敏度损失。

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