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Predictive Control of Surface PMSM Direct Torque Control System using Voltage Vectors with Variable Angle

机译:基于变角电压矢量的表面永磁同步电动机直接转矩控制系统的预测控制

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Based on flux and torque's expressions of surface permanent magnet synchronous motor (PMSM) direct torque control (DTC) system, values of stator flux and torque at next sampling point after applying voltage vector with different angle are given in this paper. The objective function is proposed which aims to minimize stator flux and torque's error. The predictive control will select the optimal angle corresponding to the minimum objective function. Simulation results show the surface PMSM DTC system under the predictive control works properly. The predictive control selects the optimal voltage vector from aggregate of voltage vectors with different angle. More selectable voltage vectors will lead to better control performance, but it will cause heavier calculation burden. In this paper, control performances of surface PMSM DTC system using different aggregates of voltage vectors are studied. Considering control performance and calculation burden, an ideal aggregate of voltage vector is given.
机译:基于表面永磁同步电动机直接转矩控制(DTC)系统的磁通量和转矩表达式,给出了施加不同角度的电压矢量后,下一个采样点的定子磁链和转矩值。提出了目标函数,其目标是使定子磁通和转矩误差最小。预测控制将选择与最小目标函数相对应的最佳角度。仿真结果表明,在预测控制下,地面PMSM DTC系统工作正常。预测控制从不同角度的电压矢量集合中选择最佳电压矢量。更多的可选电压矢量将导致更好的控制性能,但会导致较重的计算负担。本文研究了使用不同电压矢量集合的表面PMSM DTC系统的控制性能。考虑控制性能和计算负担,给出了理想的电压矢量集合。

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