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Model Predictive Direct Torque Control of a Five-Level ANPC Converter Drive System

机译:五级ANPC变频器驱动系统的模型预测直接转矩控制

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The five-level active neutral-point-clamped converter is a recently introduced topology that offers low harmonic distortion and a high output voltage. In addition to a neutral point potential in the dc link, this topology features, in each phase, a flying phase capacitor. Balancing these four internal converter voltages around their references while providing fast torque and/or current control for the machine is an intrinsically challenging control problem. Model predictive direct torque control (DTC) (MPDTC) is an ideal control methodology to address this problem. It is shown, in this paper, how MPDTC, originally developed for three-level inverters, can be adapted to this new five-level topology. Compared to DTC, the performance results of MPDTC are very promising—for the same switching frequency, the harmonic distortions of the stator currents and the torque can be more than halved. At the same time, the very fast torque response of DTC is maintained.
机译:五电平有源中性点钳位转换器是最近推出的拓扑,具有低谐波失真和高输出电压的特点。除了直流链路中的中性点电位外,该拓扑还具有在每个相中均具有一个飞相电容器的功能。在为电机提供快速转矩和/或电流控制的同时,将这四个内部转换器电压平衡在它们的参考值附近是一个本质上具有挑战性的控制问题。模型预测直接转矩控制(DTC)(MPDTC)是解决此问题的理想控制方法。本文显示了最初为三级逆变器开发的MPDTC如何适应这种新的五级拓扑。与DTC相比,MPDTC的性能结果很有希望-在相同的开关频率下,定子电流的谐波失真和转矩可以减少一半以上。同时,DTC保持了非常快速的扭矩响应。

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