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Minimization of ripples in stator current and torque of PMSM drive using advanced predictive current controller based on deadbeat control theory

机译:基于止血控制理论的先进预测电流控制器,最小化定子电流和PMSM驱动扭矩的扭曲

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摘要

An advanced predictive current controller (APCC) based on deadbeat (DB) control theory for permanent magnet synchronous motor (PMSM) drives is proposed in this paper, where the optimum voltage vector is computed offline by solving an optimization problem. The optimum voltage vector along with a zero-voltage vector (ZVV) is applied to the motor under steady state condition to minimize ripples in the stator current. To achieve a fast dynamic response during the transient state, the voltage vector having the largest magnitude is applied for the complete duration of the control cycle. The phase of the voltage-vector is synchronized to control the components of the stator-current in a DB manner. In previously reported control methods, the two best voltage vectors (BVVs) are selected through enumeration and two independent duty ratios are calculated. However, this increases the computation complexity and computational time. The proposed APCC employs a novel approach in calculating the stator current references of PMSM using maximum torque per ampere (MTPA) control. The effectiveness of the proposed APCC is investigated and compared with some recently reported predictive current controllers. The APCC improves the performance of PMSM drive under steady and transient operation with lower total harmonics distortion (THD) of the stator current and better torque dynamics.
机译:本文提出基于用于永磁同步电动机(PMSM)驱动器的止转器(DB)控制理论的高级预测电流控制器(APCC),其中通过解决优化问题来计算最佳电压矢量。在稳态条件下将最佳电压矢量与零电压矢量(ZVV)施加到电动机上,以最小化定子电流中的纹波。为了在瞬态状态期间实现快速动态响应,施加具有最大幅度的电压矢量用于控制周期的完整持续时间。电压矢量的相位同步以以DB方式控制定子电流的组件。在先前报告的控制方法中,通过枚举选择两个最佳电压矢量(BVV),并计算两个独立的占空比。然而,这增加了计算复杂性和计算时间。所提出的APCC采用一种新方法,用于使用每安培(MTPA)控制的最大扭矩计算PMSM的定子电流参考。提出的APCC的有效性与最近报告的预测电流控制器进行了调查并进行了比较。 APCC在稳定和瞬态操作下提高了PMSM驱动器的性能,具有较低的总谐波失真(THD)的定子电流和更好的扭矩动态。

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