一种逆变式异步电动机直接控制的PWM策略

A.M. Walczyna, R. J. Hill
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引用次数: 8

摘要

变频感应电机的直接自我控制是一种基于磁链和转矩两级磁滞控制的信号处理技术。DSC的优点是简单,不需要场坐标变换,即使在大功率,低开关频率的转换器下也具有高动态性能。然而,一个缺点是输出逆变器电流不是正弦的,包含六脉冲方波逆变器中典型的谐波成分。本文针对带DSC的逆变式感应电机,提出了一种新的PWM策略,以减少逆变器输入和输出电流的畸变。这是通过在定子磁通α - β平面中引入12个扇区来实现的,其中定子电压矢量选择相对于dsc衍生矢量提前(两个向前)或后(两个向后)两步,而不是零矢量开关。与经典DSC磁通六边形相比,该方法不需要额外的矢量切换来形成更接近圆形的定子磁通轨迹。此外,该技术不需要复杂的预处理或在线计算,而是基于逻辑电路和EPROM查找表。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Novel PWM strategy for direct self-control of inverter-fed induction motors
Direct self-control (DSC) of an inverter-fed induction machine is a signal processing technique based on two-level hysteresis control of the machine flux and torque. The advantages of DSC are simplicity, requiring no field coordinate transformations, and high dynamic performance even with high power, low switching frequency converters. One disadvantage, however, is that the output inverter current is not sinusoidal, containing harmonic components typical of those in six-pulse square-wave inverters. In this paper, a novel PWM strategy is proposed for inverter-fed induction machines with DSC which reduces distortion in the inverter input and output currents. This is achieved by introducing 12 sectors into the stator flux alpha - beta plane in which stator voltage vectors are chosen which are two steps in advance (two-forward) or behind (two-backward) relative to the DSC-derived vectors, instead of zero-vector switching. The method requires no additional vector switchings to form a stator flux trajectory closer to circular compared with the classic DSC flux hexagon. Moreover, the technique does not require elaborate pre-processing or online calculation, and is based on logic circuits and an EPROM look-up table.<>
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