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首页> 外文期刊>Journal of Turbulence >Exponential response electrical pole-changing method for a five-phase induction machine with a current sliding mode control strategy
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Exponential response electrical pole-changing method for a five-phase induction machine with a current sliding mode control strategy

机译:具有电流滑模控制策略的五相诱导机的指数响应电极变化方法

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摘要

Electrical pole-changing technology leads to torque ripple and speed fluctuation despite broadening the constant power speed range of the multiphase induction machine (IM) system. To reduce the torque ripple and speed fluctuation of the machine, we investigate an exponential response electrical pole-changing method for five-phase IM with a current sliding-mode control strategy. This control strategy employs the dual-plane (d (1)-q (1) and d (2)-q (2)) vector control method, which allows the IM to operate under different pole modes. Current sliding-mode controllers are applied instead of conventional proportional integral (PI) controllers to adjust the current vectors, and exponential current response achieves a smooth transition between the d (1)-q (1) and d (2)-q (2) planes. Compared with the step response pole-changing with PI control method, the proposed pole-changing method greatly reduces the torque ripple and speed fluctuation of the IM during the pole-changing process. Experimental results verify the exceptional performance of the proposed electrical pole-changing strategy.
机译:尽管扩大了多相感应机(IM)系统的恒定功率范围,但电动杆改变技术导致扭矩纹波和速度波动。为了降低机器的扭矩纹波和速度波动,我们研究了具有电流滑模控制策略的五相IM的指数响应电极变化方法。该控制策略采用双平面(D(1)-Q(1)和D(2)-Q(2))矢量控制方法,其允许IM在不同的极点模式下操作。应用电流滑模控制器代替传统的比例积分(PI)控制器以调节电流矢量,指数电流响应达到D(1)-q(1)和D(2)-q之间的平滑过渡(2)-q(2 )飞机。与具有PI控制方法的步进响应极改变相比,所提出的杆改变方法极大地降低了在磁极改变过程中IM的扭矩纹波和速度波动。实验结果验证了所提出的电极改变策略的特殊性能。

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