基于DPWM转矩控制的异步电动机恒v/f闭环控制

E. Nandhini, A. Sivaprakasam
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引用次数: 0

摘要

本文描述了一种简单的无传感器标量控制算法,用于控制感应电动机的速度。为了实现感应电机驱动的v/f闭环控制,实现了PI转矩控制器。通过利用电压命令、反馈电流和转矩估计器来估计转矩命令。此外,还为torque PI控制器提供了扭矩参考。考虑到这一点,本工作的目的是研究应用DPWM的感应电机驱动器的闭环pi转矩控制。除此之外,它还提供了一个基于pi的闭环转矩控制的描述,该控制与v/f控制一起工作,并试图在检查总谐波失真(THD)和转矩脉动的基础上发现驱动感应电机的最有效方法。为了评估DPWM技术在异步电机驱动中的开环和闭环策略的性能研究,部署了MATLAB/Simulink环境。实验结果得到了验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A New Closed Loop Constant v/f Control of Induction Motor with Torque Control Based on DPWM
An easy sensor-less scalar control algorithm is described in this article as a method for controlling the speed of an induction motor. For developing a closed-loop v/f control of the induction motor drive, a torque controller with PI is implemented. The torque command was estimated by utilizing the voltage command, the feedback current, and a torque estimator. Additionally, a torque reference was provided for the Torque PI controller. Considering this, the purpose of this work is to investigate the closed-loop PI-based torque control of an induction motor drive that applies DPWM. In addition to this, it provides a description of a PI-based closed-loop torque control that works in conjunction with v/f control and tries to discover the most effective method for driving an induction motor based on an examination of Total Harmonic Distortion (THD) and torque ripple. To evaluate the performance studies of open- and closed-loop strategies with DPWM techniques for induction motor driving, the MATLAB/Simulink environment has been deployed. Experimental results have been validated.
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CiteScore
1.70
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