An improved direct torque control using fuzzy logic controllers and adaptive observer

H. Saberi, M. Sharifian
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引用次数: 6

Abstract

Simple structure, quick, and robust response of direct torque control (DTC) make it attractive in ac drives. However, in sensorless applications, precise estimation of rotor speed is a crucial issue as well as the torque and flux estimation. In this paper an adaptive flux observer is introduced with stator current and flux vector components as state variables and rotor speed as an unknown parameter which are estimated simultaneously using an adaptive scheme. Also torque, flux, and current pulsations during steady state are considered as the disadvantages of the classical DTC method. A combined DTC-SVM strategy is presented using fuzzy logic control (FLC). Fuzzy logic controllers are designed such that obtain a fast response for dynamic performance, and high accuracy in steady state.
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采用模糊逻辑控制器和自适应观测器对直接转矩控制进行改进
直接转矩控制(direct torque control, DTC)结构简单、响应速度快、鲁棒性好,在交流传动中极具吸引力。然而,在无传感器应用中,转子转速的精确估计以及转矩和磁链的估计是一个关键问题。本文介绍了一种自适应磁链观测器,以定子电流和磁链矢量分量为状态变量,转子转速为未知参数,采用自适应方法对其进行同步估计。此外,稳态时的转矩、磁通和电流脉动也被认为是经典直接转矩控制方法的缺点。提出了一种基于模糊逻辑控制(FLC)的DTC-SVM组合策略。模糊控制器的设计使其动态响应速度快,稳态精度高。
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