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Model Predictive Direct Torque Control of Surface PMSM System Based on Basic Voltage Vector of VSI

机译:基于VSI基本电压矢量的表面PMSM系统模型预测直扭矩控制

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In this paper model predictive direct torque control (MP-DTC) for surface permanent magnet synchronous motor (PMSM) direct torque control (DTC) system is proposed. Based on flux and torque's expressions of surface PMSM in stator flux reference frame, 6 basic voltage vectors generated by voltage source inverter (VSI) are used as candidate voltage vectors. And according to values of stator flux and torque at next sampling point after applying these 6 voltage vector, 6 different values of cost function about stator flux and torque's error are obtained. The predictive control will select voltage vector corresponding to the minimum cost function as output voltage vector. And in order to reduce the computational burden, based on the utilization rate of 6 voltage vectors, the predictive control using simplified aggregate of candidate voltage vectors is given. Simulation results show compared with switching table, control performance of predictive control is better. And compared with predictive control using 6 basic voltage vectors, the proposed predictive control has almost the same control performance, but switching frequency is decreased and calculation burden is also reduced.
机译:在该纸张模型中,提出了用于表面永磁同步电动机(PMSM)直接扭矩控制(DTC)系统的预测直扭矩控制(MP-DTC)。基于焊剂和扭矩的表面PMSM在定子磁通参考框架中,由电压源逆变器(VSI)产生的6个基本电压矢量用作候选电压矢量。并且根据在施加这6个电压向量之后的下一个采样点的定子通量和扭矩的值,获得了定子通量和扭矩误差的6个成本函数的6个不同值。预测控制将选择与输出电压矢量相对应的电压矢量。为了减少计算负担,基于6电压矢量的利用率,给出了使用简化候选电压矢量的预测控制。仿真结果表明与开关表相比,预测控制的控制性能更好。并与使用6个基本电压矢量的预测控制相比,所提出的预测控制具有几乎相同的控制性能,但切换频率降低,计算负担也降低。

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