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A New Fuzzy Logic Based Space Vector Modulation Approach on Direct Torque Controlled Induction Motors

机译:直接扭矩控制感应电动机的一种新的模糊逻辑空间矢量调制方法

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The induction motors are indispensable motor types for industrial applications due to its well-known advantages. Therefore, many kind of control scheme are proposed for induction motors over the past years and direct torque control has gained great importance inside of them due to fast dynamic torque response behavior and simple control structure. This paper suggests a new approach on the direct torque controlled induction motors, Fuzzy logic based space vector modulation, to overcome disadvantages of conventional direct torque control like high torque ripple. In the proposed approach, optimum switching states are calculated by fuzzy logic controller and applied by space vector pulse width modulator to voltage source inverter. In order to test and compare the proposed DTC scheme with conventional DTC scheme simulations, in Matlab/Simulink, have been carried out in different speed and load conditions. The simulation results showed that a significant improvement in the dynamic torque and speed responses when compared to the conventional DTC scheme
机译:由于其众所周知的优点,电感电机是工业应用的不可或缺的电机类型。因此,由于快速动态扭矩响应行为和简单的控制结构,在过去几年中提出了许多用于感应电动机的控制方案,并且由于快速动态扭矩响应行为和简单的控制结构,直接扭矩控制在它们内部具有很大的重要性。本文提出了一种新的直接控制感应电动机,基于模糊逻辑的空间向量调制的新方法,克服了常规直接扭矩控制的缺点,如高扭矩波动。在所提出的方法中,通过模糊逻辑控制器计算最佳切换状态,并通过空间向量脉冲宽度调制器施加到电压源逆变器。为了测试和比较具有传统DTC方案模拟的所提出的DTC方案,在MATLAB / Simulink中,已经以不同的速度和负载条件进行了。仿真结果表明,与传统的DTC方案相比,动态扭矩和速度响应的显着改善

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