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A Polynomial Current Controller for a Third-Harmonic Modulated Power Factor Correction Rectifier Feeding a Vector Controlled Induction Motor Drive

机译:用于矢量控制感应电动机驱动的三次谐波调制功率因数校正整流器的多项式电流控制器

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摘要

This paper presents the analysis, design, and hardware implementation of a digital polynomial Regulation, Steady-State Error and Tracking (RST) current controller-based third-harmonic modulated boost-type power factor correction (PFC) rectifier. The proposed rectifier is used at the front end of a vector controlled induction motor drive (VCIMD) to eliminate harmonics at the input AC supply. The proposed PFC rectifier modifies the input current to a sinusoid with unity power factor apart from offering DC bus voltage regulation. In this paper, a digital proportional-integral (PI) and RST current controllers are compared in terms of total harmonic distortion (THD) and power factor (PF) at the point of common coupling for different loading conditions. The RST current controller tracks the set-point accurately with zero steady-state error and offers good disturbance rejection that enables further reduction of supply current THD as compared to a conventional PI current controller. The control algorithm for the PFC front end rectifier along with vector control technique is implemented using a digital signal processor, and the dynamic performance is analyzed for step changes in reference speed and load torques, demonstrating significant improvement in the performance indices.
机译:本文介绍了基于数字控制器,稳态误差和跟踪(RST)电流控制器的三次谐波调制升压型功率因数校正(PFC)整流器的分析,设计和硬件实现。拟议的整流器用于矢量控制感应电动机驱动器(VCIMD)的前端,以消除输入交流电源上的谐波。提出的PFC整流器除了提供直流总线电压调节外,还以统一的功率因数将输入电流修改为正弦波。在本文中,针对不同负载条件下的公共耦合点,在总谐波失真(THD)和功率因数(PF)方面比较了数字比例积分(PI)和RST电流控制器。与传统的PI电流控制器相比,RST电流控制器能够以零稳态误差精确地跟踪设定点,并具有良好的抗扰性,从而能够进一步降低电源电流THD。使用数字信号处理器来实现PFC前端整流器的控制算法以及矢量控制技术,并针对参考速度和负载转矩的阶跃变化对动态性能进行了分析,从而证明了性能指标的显着改善。

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