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Direct Stator Flux and Torque Control for asymmetrical six-phase induction motor drives

机译:直接定子磁通和转矩控制,用于不对称六相感应电动机驱动器

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A Direct Stator Flux and Torque Control (DSFTC) scheme for asymmetrical six-phase induction motor drives is discussed in this paper. The induction machine has two sets of stator three-phase windings spatially shifted by 30 electrical degrees with isolated neutral points. The proposed control strategy is very simple and it is based on Proportional Integral (PI) regulators implemented in the stator flux synchronous reference frame. The advantages of the discussed control strategy are: constant inverter switching frequency, inherent current limitation, good transient and steady-state performance, maximum torque capability at field weakening even with large variations of the inverter DC link voltage and less distorted machine currents in contrast to DTC schemes with variable switching frequency. Simulation results are presented for a low voltage/high current 10 kW asymmetrical six-phase induction motor drive prototype designed for light traction.
机译:本文讨论了非对称六相感应电动机驱动器的直接定子磁通和转矩控制(DSFTC)方案。感应电机具有两组定子三相绕组,它们在空间上错开30电度,并具有隔离的中性点。所提出的控制策略非常简单,它基于在定子磁通同步参考框架中实现的比例积分(PI)调节器。所讨论的控制策略的优点是:恒定的逆变器开关频率,固有的电流限制,良好的瞬态和稳态性能,即使在逆变器直流母线电压变化较大且电机电流失真较小的情况下,在磁场减弱时的最大转矩能力具有可变开关频率的DTC方案。给出了针对光牵引设计的低压/大电流10 kW不对称六相感应电动机驱动器原型的仿真结果。

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