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首页> 外文期刊>Industrial Electronics, IEEE Transactions on >Voltage Disturbance Rejection for Matrix Converter-Based PMSM Drive System Using Internal Model Control
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Voltage Disturbance Rejection for Matrix Converter-Based PMSM Drive System Using Internal Model Control

机译:基于内部模型控制的基于矩阵转换器的PMSM驱动系统的电压干扰抑制

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摘要

A strategy based on internal model control (IMC) is proposed for a matrix converter-based permanent magnet synchronous machine (PMSM) drive system to reduce the adverse impact on drive performance caused by nonlinear output characteristics of matrix converter in the case of input voltage disturbance. Based on the duty-cycle space vectors and small-signal model, the relationship between output and input disturbances is obtained in the synchronous reference frame. Output characteristics of matrix converter are analyzed, and practical considerations are discussed for the purpose of controller design. A general design procedure of the robust IMC controller is described, and parameters of the controller are determined. Numerical simulations and experiments with a 10-kW prototype are carried out. The results show that good dynamic and steady-state performance on PMSM speed regulation is achieved under the unbalanced and distorted input voltage conditions, and the immunity of the drive system is verified to be improved.
机译:针对基于矩阵变换器的永磁同步电机(PMSM)驱动系统,提出了一种基于内部模型控制(IMC)的策略,以减少输入电压扰动时矩阵变换器的非线性输出特性对驱动性能的不利影响。 。基于占空比空间矢量和小信号模型,在同步参考帧中获得了输出和输入干扰之间的关系。分析了矩阵转换器的输出特性,并讨论了出于控制器设计目的的实际考虑。描述了鲁棒IMC控制器的一般设计过程,并确定了控制器的参数。进行了10kW原型的数值模拟和实验。结果表明,在不平衡和畸变的输入电压条件下,PMSM调速具有良好的动态和稳态性能,并验证了驱动系统的抗扰性得到了改善。

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