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A new passive filter design method for overvoltage suppression and bearing currents mitigation in a long cable based PWM inverter-fed motor drive system

机译:一种新的无源滤波器设计方法,用于基于长电缆的PWM逆变器供电的电机驱动系统中的过压抑制和轴承电流缓解

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摘要

High-frequency pulse width modulation (PWM) in inverter-fed induction motor drive systems are widely used in industrial applications because of their flexible speed control and energy efficiency. However, high-frequency pulses induce overvoltage spikes to the motor via long cable. Such phenomenon would cause serious deterioration of the motor and cable. A passive overvoltage suppression techniques of low-loss ¿¿¿RL-plus-C¿¿¿ filter has been proposed recently. It has not only some merits of simple structure, low cost, and good robustness, but also a significant merit of low power dissipation. Based on the design method of ¿¿¿RL-plus-C¿¿¿ filter, this paper presents a new passive filter design method which can both eliminate voltage surges and greatly reduce inverter-induced bearing currents. The theoretical analysis and the design method are introduced in detail. Simulation results are good agreement with the theoretical analysis.
机译:逆变器供电的感应电动机驱动系统中的高频脉冲宽度调制(PWM)由于具有灵活的速度控制和能效,因此在工业应用中得到了广泛的应用。但是,高频脉冲会通过较长的电缆对电机产生过电压尖峰。这种现象会导致电动机和电缆严重损坏。最近已经提出了一种低损耗的RL-plus-C滤波器的无源过压抑制技术。它不仅具有结构简单,成本低,鲁棒性强的优点,而且具有低功耗的显着优点。基于“ RL-plus-C”滤波器的设计方法,提出了一种新的无源滤波器设计方法,该方法既可以消除电压浪涌,又可以大大降低逆变器产生的轴承电流。详细介绍了理论分析和设计方法。仿真结果与理论分析吻合良好。

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