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Simulation, Test and Analysis of Three-phase Short-Circuit Braking in IGCT-based MV Adjustable Speed Drive Systems

机译:基于IGCT的MV调速系统中三相短路制动的仿真,测试与分析。

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In the medium voltage adjustable speed drive (MV-ASD) systems, low switching frequency results in high harmonics in the output voltage waveform, which is harmful to the isolation of the induction motor. Therefore, the power filter is usually set between inverter and motor. However, self-excitation oscillation easily occurs under this structure due to the filter capacitor, which could continuously bring up the DC-link voltage of the inverter, and even destroy the devices in inverters. One of the effective ways to eliminate the self-excitation oscillation is to set the inverter to threephase short-circuit braking state, which is described and analyzed in detail in this paper. Three-phase short-circuit braking could be easily realized in the inverter-motor system. It can be verified by both simulation based on PSIM and test results that this is an efficient way in real applications. Finally, the characteristics of the short-circuit braking is summarized and beneficial suggestions on using this braking method are presented.
机译:在中压变频器(MV-ASD)系统中,低开关频率会导致输出电压波形中出现高次谐波,这对感应电动机的隔离有害。因此,电源滤波器通常设置在变频器和电机之间。然而,在这种结构下,由于滤波电容器的作用,很容易发生自激振荡,这可能会不断提高逆变器的直流母线电压,甚至损坏逆变器中的设备。消除自激振荡的一种有效方法是将逆变器设置为三相短路制动状态,本文对此进行了详细介绍和分析。变频电动机系统中可以很容易地实现三相短路制动。可以通过基于PSIM的仿真和测试结果来验证,这是在实际应用中的一种有效方法。最后,总结了短路制动的特点,并提出了使用该制动方法的有益建议。

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