Direct torque control of induction motors: stability analysis and performance improvement

R. Ortega, N. Barabanov, G. Escobar
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引用次数: 97

Abstract

Practitioners in the electric drives community have introduced a novel torque control strategy for high power induction motor applications called direct torque control (DTC), which has three distinctive features: it focuses on stator (instead of rotor) flux regulation, it does not aim at an asymptotic system inversion (hence it does not require additional current loops), and it explicitly takes into account the discrete nature of the control actions, which are simply points of a finite set obtained from a switching logic. Besides its simplicity, it is claimed that the achieved performance is (in some instances) superior to classical field oriented strategies because of the digital form of the control structure and the reduced dependence on parameter variations of the stator flux calculations. Our objective in this paper is twofold, first to carry out a mathematical analysis of the stabilization mechanism of DTC, which helps us assess the achievable performance of the current scheme and provide guidelines for its tuning. Second, to propose a modified DTC to improve its dynamical behavior. Experimental results are presented to illustrate the main points of our paper.
感应电机直接转矩控制:稳定性分析及性能改进
电力驱动领域的从业者已经为大功率感应电机应用引入了一种新的转矩控制策略,称为直接转矩控制(DTC),它具有三个显著特征:它专注于定子(而不是转子)磁通调节,它不针对渐近系统反转(因此它不需要额外的电流回路),并且它明确地考虑了控制动作的离散性质,这些动作只是从开关逻辑获得的有限集合的点。除了简单之外,由于控制结构的数字化形式和对定子磁链计算参数变化的依赖性降低,声称所实现的性能(在某些情况下)优于经典的场定向策略。我们在本文中的目标是双重的,首先对DTC的稳定机制进行数学分析,这有助于我们评估当前方案的可实现性能,并为其调谐提供指导。其次,提出了一种改进的DTC,以改善其动力学性能。实验结果说明了本文的主要观点。
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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