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Analysis and Control of NPC-3L Inverter Fed Dual Three-Phase PMSM Drives Considering their Asymmetric Factors

机译:考虑非对称因素的NPC-3L逆变器馈电双三相PMSM驱动器的分析和控制

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摘要

The purpose of this paper is to study a high-performance control scheme for neutral-point-clamping three-level (NPC-3L) inverter fed dual three-phase permanent magnet synchronous motor (PMSM) drives by considering some asymmetric factors such as the non-identical parameters in phase windings. To implement this, the system model is analyzed for dual three-phase PMSM drives with asymmetric factors based on the vector space decomposition (VSD) principle. Based on the equivalent circuits, PI controllers with feedforward compensation are used in the d-q subspace for regulating torque, where the cut-off frequency of the PI controllers are set at the twice the fundamental frequency for compensating both the additional DC component and the second order component caused by asymmetry. Meanwhile, proportional resonant (PR) controllers are proposed in the x-y subspace for suppressing the possible unbalanced currents in the phase windings. A dual three-phase space vector modulation (DT-SVM) is designed for the drive, and the balancing factor is designed based on the numerical fitting surface for balancing the DC link capacitor voltages. Experimental results are given to demonstrate the validity of the theoretical analysis and the proposed control scheme.
机译:本文的目的是通过考虑一些非对称因素,例如中性点钳位三电平(NPC-3L)逆变器供电的双三相永磁同步电动机(PMSM)驱动器,来研究一种高性能控制方案。相绕组中的参数不一致。为此,基于矢量空间分解(VSD)原理对具有非对称因素的双三相PMSM驱动器进行了系统模型分析。基于等效电路,在dq子空间中使用具有前馈补偿的PI控制器来调节扭矩,其中PI控制器的截止频率设置为基本频率的两倍,以补偿附加的直流分量和二阶由不对称引起的分量。同时,在x-y子空间中提出了比例谐振(PR)控制器,用于抑制相绕组中可能存在的不平衡电流。为驱动器设计了双三相空间矢量调制(DT-SVM),并根据数值拟合表面设计了平衡因数,以平衡DC链路电容器电压。实验结果证明了理论分析和提出的控制方案的有效性。

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