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DTC-SVM-based position regulation of an induction motor: a comparison between different strategies

机译:基于DTC-SVM的感应电动机位置调节:不同策略之间的比较

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摘要

This work is aimed at looking into potential advantages of direct torque control (DTC) strategies for position regulation applications. Of particular interest is the capability exhibited by DTC strategies to develop the maximum torque at standstill. Within this background, the paper is devoted to the presentation of a comparison study between three DTC strategies dedicated to position control of an induction motor, such that: 1) the basic DTC strategy; 2) the DTC strategy with a look-up table including only active voltage vectors; 3) the DTC-SVM strategy with hysteresis controllers and imposed commutation frequency. Following simulation works, it has been found that the third strategy offers the lower torque ripples. Furthermore, it exhibits a high capability to reject the demagnetisation problem which penalises the stator flux regulation at low speeds in the Takahashi basic strategy. However, the DTC-SVM requires a control system with higher CPU frequencies in such a way its implementation scheme is more complex than the basic DTC strategy.
机译:这项工作旨在研究直接转矩控制(DTC)策略在位置调节应用中的潜在优势。特别令人感兴趣的是DTC策略在静止时产生最大扭矩的能力。在此背景下,本文专门介绍了感应电机位置控制的三种DTC策略之间的比较研究,这些策略包括:1)基本的DTC策略; 2)具有仅包含有效电压矢量的查找表的DTC策略; 3)具有迟滞控制器和施加换向频率的DTC-SVM策略。经过模拟工作,发现第三种策略提供了较低的转矩波动。此外,在高桥基本策略中,它具有很高的抵抗退磁问题的能力,退磁问题不利于低速时定子磁通的调节。但是,DTC-SVM要求控制系统具有更高的CPU频率,因此其实现方案比基本DTC策略更复杂。

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