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Three-Level NPC-Inverter-Based SVM-VCIMD With Feedforward Active PFC Rectifier for Enhanced AC Mains Power Quality

机译:基于三级NPC逆变器的SVM-VCIMD,具有前馈有源PFC整流器,可增强交流电源质量

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摘要

This paper presents a Scott-transformer-based power factor correction (PFC) rectifier for a three-level neutral-point-clamped (NPC) inverter-fed induction motor drive (IMD) for enhanced power quality at ac mains. Here, the Scott-transformer-based PFC rectifier is digitally controlled by a current feedforward control. The torque component of the stator current is added to the output of the dc-bus voltage proportional plus integral (PI) controller as a feedforward term, which enhances the dynamic performance of the dc-bus voltage regulation. The three-level NPC inverter is controlled by a space vector-modulated (SVM) indirect vector control scheme. The performance of the proposed dc-bus voltage loop with feedforward control is compared with the conventional one and found to offer faster response with less overshoot and undershoot. The proposed IMD system is simulated using MATLAB/Simulink and the same is validated experimentally. The proposed drive system is analyzed for a wide variation in reference speed and load torques demonstrating significant improvement in the performance indices.
机译:本文提出了一种基于Scott变压器的功率因数校正(PFC)整流器,该整流器用于三电平中性点钳位(NPC)逆变器供电的感应电动机驱动器(IMD),以提高交流电源的电能质量。在此,基于斯科特变压器的PFC整流器通过电流前馈控制进行数字控制。定子电流的转矩分量作为前馈项添加到直流母线电压比例加积分(PI)控制器的输出中,从而增强了直流母线电压调节的动态性能。三级NPC逆变器由空间矢量调制(SVM)间接矢量控制方案控制。拟议的带有前馈控制的直流总线电压环路的性能与传统的相比,发现响应速度更快,过冲和下冲更少。所提出的IMD系统使用MATLAB / Simulink进行了仿真,并通过实验进行了验证。对建议的驱动系统进行了分析,以求出参考速度和负载扭矩的较大变化,从而证明性能指标得到了显着改善。

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