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Real-time implementation of IRFOC for Single-Phase Induction Motor drive using dSpace DS 1104 control board

机译:使用dSpace DS 1104控制板实时实现用于单相感应电动机驱动器的IRFOC

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摘要

Single Phase induction Motors (SPIMs) are one of the widely used motors in the world. This explains the interest accorded by researchers on the improvement of the quality and performances of these motors. The availability of low-cost static converters makes possible the economic use of energy and improvement of the quality of the electromagnetic torque in the SPIM. Nowadays, Indirect Rotor-Field-Oriented Control (IRFOC) techniques brought on a renaissance in modern high-performance control of PWM inverter fed SPIM. In this paper, an IRFOC system is proposed for SPIMs including a relatively simple and effective decoupling scheme. This is achieved by introducing two new decoupling signals to the system. However, model asymmetry in SPIMs causes extra coupling between two stator windings. To use the field orientation control, the asymmetry must be eliminated by using an appropriate variable changing. A computer simulation of the IRFOC for Single-Phase Induction Motor drive is carried out to test the validity of the proposed method at nominal and zero speed. The design, analysis, and implementation for a 1.1-kW Single-Phase Induction Motor are completely carried out using a dSPACE DS1104 digital signal processor (DSP) based real-time data acquisition control (DAC) system, and MATLAB/Simulink environment. Digital simulation and experimental results are presented to show the improvement in performance of the proposed algorithm.
机译:单相感应电动机(SPIM)是世界上使用最广泛的电动机之一。这解释了研究人员对改善这些电动机的质量和性能的兴趣。低成本静态转换器的可用性使SPIM中的能源经济使用和电磁转矩质量的提高成为可能。如今,间接转子磁场定向控制(IRFOC)技术使采用SPIM供电的PWM逆变器的现代高性能控制复兴。本文提出了一种针对SPIM的IRFOC系统,该系统包括一个相对简单且有效的去耦方案。这是通过将两个新的去耦信号引入系统来实现的。但是,SPIM中的模型不对称会导致两个定子绕组之间的额外耦合。要使用磁场定向控制,必须通过适当的变量更改来消除不对称性。对单相感应电动机驱动的IRFOC进行了计算机仿真,以测试该方法在额定速度和零速时的有效性。使用基于dSPACE DS1104数字信号处理器(DSP)的实时数据采集控制(DAC)系统以及MATLAB / Simulink环境,可以完全完成1.1 kW单相感应电动机的设计,分析和实现。数字仿真和实验结果表明了该算法性能的提高。

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