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Active Damping of Output $LC$ Filter Resonance for Vector-Controlled VSI-Fed AC Motor Drives

机译:矢量控制的VSI馈电交流电动机驱动器的输出 $ LC $ 滤波器共振

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摘要

For longer life of alternating-current (ac) machines, it is desirable to feed them by sinusoidal voltages. This can be achieved by connecting an $LC$ filter between the voltage source inverter and the motor. However, the $LC$ filter creates unwanted oscillation at system resonant frequency. A resistance connected in series with the capacitor is a solution to damp out the resonant-frequency oscillation, but this damping technique increases loss in the system. In this paper, a simple active damping technique is proposed for lossless damping of vector-controlled ac motor drives with an $LC$ filter. In the proposed technique, the resistance drop is emulated in the control using the terminal motor voltages. The proposed technique is carried out in the three-phase domain for better accuracy of the control. The proposed technique neither affects the dynamic response of the drive nor changes the design of the standard vector control loops. Results from experimental ac motor drives are presented.
机译:为了延长交流(ac)电机的使用寿命,希望通过正弦电压为它们供电。这可以通过在电压源逆变器和电动机之间连接 $ LC $ 滤波器来实现。但是, $ LC $ 滤波器会在系统谐振频率处产生不必要的振荡。与电容器串联的电阻是解决谐振频率振荡的一种方法,但是这种阻尼技术会增加系统的损耗。在本文中,提出了一种简单的主动阻尼技术,该矢量可用于矢量控制交流电动机驱动器的无损阻尼,其 $ LC $ 过滤。在提出的技术中,电阻降是在使用端子电动机电压的控制中进行仿真的。所提出的技术在三相域中执行,以实现更好的控制精度。所提出的技术既不会影响驱动器的动态响应,也不会更改标准矢量控制回路的设计。给出了实验交流电动机驱动器的结果。

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