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Three-phase, two-switch PFC rectifier fed three-level VSI based FOC of induction motor drive

机译:三相,两开关PFC整流器基于感应电机驱动的基于三电平VSI的FOC馈电

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摘要

This paper presents a Scott transformer based three-phase, two-switch PFC (Power Factor Correction) boost rectifier for improving the power quality in a three-level diode clamped inverter (DCI) feeding indirect rotor field oriented control (FOC) based induction motor drive (IMD). Sinusoidal unity power factor source current and dc-link voltage regulation are achieved in the proposed rectifier only with two-switches. The three-level DCI is supplied by a split dc-link obtained from a Scott connected transformer feeding a rectifier. It is shown that a three-level DCI achieves reduced stator current with lower voltage harmonic content even at a lower switching frequency as compared to a two-level inverter. This results in reduction of voltage stress on motor windings for the same amount of torque ripple when indirect rotor FOC algorithm is implemented for the IMD. A MATLAB based simulation model of proposed PFC rectifier is developed for validating the design and to verify that the power quality issues in three-level DCI fed IMD are adequately addressed. The performance of the system is studied and compared with a conventional diode rectifier fed vector controlled IMD for different operating conditions of the drive.
机译:本文提出了一种基于Scott变压器的三相,两开关PFC(功率因数校正)升压整流器,用于改善基于三电平二极管钳位逆变器(DCI)馈送基于间接转子磁场定向控制(FOC)的感应电动机的电能质量驱动器(IMD)。仅使用两个开关的拟议整流器即可实现正弦功率因数源电流和直流链路电压调节。三级DCI由从DC整流器馈入的Scott变压器获得的分离式DC链路提供。结果表明,与两电平逆变器相比,即使在较低的开关频率下,三电平DCI仍能以较低的电压谐波含量实现降低的定子电流。当为IMD实现间接转子FOC算法时,对于相同的转矩脉动,这会减少电动机绕组上的电压应力。开发了基于MATLAB的拟议PFC整流器的仿真模型,以验证设计并验证是否充分解决了三级DCI馈电IMD中的电能质量问题。对系统的性能进行了研究,并将其与传统的二极管整流器馈入的矢量控制的IMD用于不同的驱动器工作条件。

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