5-level torque-hysteresis controller for DTC based IM drive

Payal S. Borse, Mohan P. Thakre, Nishant P. Matale
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Abstract

In the recent trade demand, the AC machines and drives are extensively utilized. Normally, the AC drives exploit with high efficacy as well as high performance. Among other things, one of the best control strategies is Direct torque control (DTC). For this article, the induction motor drive is projected very simple amended DTC scheme in accordance with the hysteresis controller. By the reason of its modest assembly & effective execution, DTC is used for AC as well as DC drive as associated to other monitoring structures. The presence of high ripple content in output torque for DTC scheme is only an obstacle. This article approaches extenuation of the ripples in torque by varying the predictable 5-level torque hysteresis controller used in DTC. The expansion of distinctive switching approach has been generated for chosen voltage vector. On the basis of ripple content simulation outcomes fulfilled in MATLAB/SIMULINK for hysteresis torque controller to minimized the ripples.
基于直接转矩控制的IM驱动器的5级转矩滞后控制器
在最近的贸易需求中,交流电机和驱动器被广泛使用。通常情况下,交流驱动器具有高效率和高性能。其中,最好的控制策略之一是直接转矩控制(DTC)。针对本文提出的感应电机驱动是非常简单的根据滞环控制器修正的直接转矩控制方案。由于其体积小,执行效率高,因此既可用于交流驱动,也可用于直流驱动,并与其他监控结构相关联。对于直接转矩方案,输出转矩中存在高纹波含量只是一个障碍。本文通过改变直接转矩控制中使用的可预测的5级转矩迟滞控制器来减轻转矩波动。针对所选电压矢量,给出了独特开关方法的扩展。根据纹波含量在MATLAB/SIMULINK中实现的仿真结果,对磁滞转矩控制器进行了最小化纹波的设计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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