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Model predictive torque control for permanent magnet synchronous motor based on dynamic finite-control-set using fuzzy control

机译:基于模糊控制的动态有限控制 - 型永磁同步电动机模型预测扭矩控制

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Aiming at the problem of fixed candidate voltage vector (VV) in conventional finite-control-set (FCS) model predictive torque control (MPTC) of permanent magnet synchronous motor (PMSM), fuzzy control is use to determine dynamic candidate VVs based on effects of the value and angle of applying VV on stator flux and torque. The inputs of fuzzy controller are errors of stator flux and torque and outputs are 3 candidate VVs. Simulation results show compared with conventional FCS-MPTC, the proposed strategy can decrease stator flux and torque’s ripples and calculation burden of MPTC, but it will increase average switching frequency. In order to decrease average switching frequency, zero VV is also used as candidate VV, but it will decrease dynamic torque response. Thus the method that zero VV is used only at steady state is given. Simulation results show the control performance of the system remains basically unchanged and the average switching frequency is reduced.
机译:旨在在永磁同步电动机(PMSM)的传统有限控制集(FCS)模型预测扭矩控制(MPTC)中的固定候选电压矢量(VV)问题,使用模糊控制来基于效果确定动态候选VVS施加VV对定子通量和扭矩的值和角度。模糊控制器的输入是定子通量的误差,扭矩和输出是3个候选VV。仿真结果表明与传统的FCS-MPTC相比,所提出的策略可以减少定子通量和扭矩的涟漪和计算负担的MPTC,但它将增加平均切换频率。为了降低平均开关频率,零VV也用作候选VV,但它将降低动态扭矩响应。因此,给出了零VV仅在稳态使用的方法。仿真结果显示系统的控制性能基本保持不变,平均开关频率降低。

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