基于luenberger观测器的磁链估计改进DTC性能

P. Karlovsky, J. Lettl
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引用次数: 5

摘要

直接转矩控制(DTC)在许多应用中是感应电机控制中性能最好的策略之一。然而,这种方法有一些缺点。其中非常重要的一点是力矩波形中存在的波纹。它们存在的主要原因是电动机的型号不准确。本文用Luenberger观测器代替经典的模型来计算电机的模型。在dSPACE ds1103平台上创建了具有原始模型和Luenberger观测器的DTC策略。给出了在某感应电机驱动上的实验结果。结果表明,基于Luenberger观测器的直接转矩控制具有较好的性能。在晶体管开关频率不变的情况下,转矩波形的波纹减小。
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Improvement of DTC performance using luenberger observer for flux estimation
Direct torque control (DTC) is one of the best performing strategies for induction motor control in many applications. However, this method suffers from a few disadvantages. Very important one is the presence of ripples in the torque waveform. The main reason of their presence is the inaccurate model of the motor. This paper utilizes Luenberger observer to calculate the model of the motor instead of the classical one. The DTC strategies with its original model and with Luenberger observer are created on dSPACE ds1103 platform. The results from experiment on a specific induction motor drive are shown. The paper shows better performance of the DTC with model based on Luenberger observer. The ripples in torque waveforms were lowered while switching frequency of the transistors remained the same.
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