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Development of testing methods for winding turn-to-turn insulation of low voltage motors fed by PWM converters

机译:PWM转换器送馈的低压电动机绕组转弯绝缘试验方法的研制

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Electrical insulation materials quality and reliability play a central role in providing the electrical machines reliable operation. It is well recognized that insulating system of low voltage motor fed by converter is exposed to electrical stresses arising from repetitive square waveform of supplying voltage while additional impact of temperature, vibrations and environmental operation conditions are imposed. The implementation of wide bandgap power semiconductors as SiC and GaN in recent years allows to create very powerful converters with high switching speed. On the other hand it leads to a remarkable increasing electro-thermal constraints applied to windings' turn-to-turn insulation of motors fed by such converters. The relevance of new testing methods and test benches is well found by remarkable modern advances in semiconductors technology. Testing methods for low voltage motors winding wires insulation proposed in this paper permit to evaluate the withstand capability of insulation materials applying the high frequency modulated signals representative for traditional converters supplying (ps level of impulse rise/fall time), as well as the voltage waveforms with very straight adjustable dV/dt, very fast rise time and fall time (ns level of impulse rise/fall time) engendered by new semiconductor devices based on wide bandgap materials. The possibility to modify experiment parameters in wide rage for insulation endurance tests allows to obtain a rich data for further analysis.
机译:电绝缘材料质量和可靠性在提供电气机可靠的操作方面发挥着核心作用。很好地认识到,通过转换器供给的低压电动机的绝缘系统暴露于从供应电压的重复方波形产生的电应力,同时施加额外的温度冲击,振动和环境操作条件。近年来SIC和GAN的宽带隙功率半导体的实现允许为具有高开关速度的转换器创建非常强大的转换器。另一方面,它导致了应用于由这种转换器供给的电动机的绕组的绕组转向旋转绝缘的显着增加的电热约束。通过半导体技术的显着现代进步,新的测试方法和测试台的相关性得到了很好的发现。本文提出的低压电动机绕组线材的测试方法允许评估应用高频调制信号代表的绝缘材料的承受能力,用于传统转换器提供(PS脉冲升高/下降时间),以及电压波形通过基于宽带隙材料,具有非常快速的可调节DV / DT,非常快速上升时间和下降时间(NS脉冲升高/下降时间)。在宽愤怒中修改实验参数的可能性允许获得丰富的数据以进行进一步的分析。

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