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A speed-sensorless startup of an induction motor driven by a modular multilevel cascade inverter (MMCI-DSCC)-Applications to quadratic-torque loads like fans, blowers, and compressors

机译:由模块化多级级联逆变器(MMCI-DSCC)驱动的感应电动机的无速度传感器启动-适用于风机,鼓风机和压缩机等二次转矩负载

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A modular multilevel cascade inverter based on double-star chopper-cells (MMCI-DSCC) has been expected as one of the next-generation multilevel PWM inverters for medium-voltage high-power motor drives. This paper has theoretical and experimental discussions on a speed-sensorless startup of an induction motor driven by the MMCI-DSCC, especially when this motor drive is applied to fans, blowers, and compressors, the torque of which is proportional to a square of a motor mechanical speed. A theoretical analysis focusing on ac-voltage fluctuation of each dc capacitor indicates that the ac-voltage fluctuation can be kept within an acceptable level over a wide range of motor mechanical speeds by controlling the three-phase stator currents. Experimental steady-state waveforms obtained from a downscaled motor drive verify operating performance with a quadratic-torque load.
机译:期望基于双星斩波单元(MMCI-DSCC)的模块化多级级联逆变器是用于中压大功率电机驱动器的下一代多级PWM逆变器之一。本文对由MMCI-DSCC驱动的感应电动机的无速度传感器启动进行了理论和实验讨论,尤其是当该电动机驱动器应用于风扇,鼓风机和压缩机时,其转矩与转矩的平方成正比。电机机械速度。关于每个直流电容器的交流电压波动的理论分析表明,通过控制三相定子电流,可以在很宽的电动机机械速度范围内将交流电压波动保持在可接受的水平内。从缩小的电动机驱动器获得的实验稳态波形验证了二次转矩负载下的运行性能。

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