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Improved Sensorless Direct Torque Control of Induction Motor Using Fuzzy Logic and Neural Network Based Duty Ratio Controller

机译:基于模糊逻辑和神经网络的占空比控制器改进的感应电动机无传感器直接转矩控制。

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This paper presents improvements in Direct Torque control of an induction motor using Fuzzy logic with Fuzzy logic and neural network based duty ratio controller. The conventional DTC (CDTC) of induction motor suffers from major drawbacks like high torque and flux ripples and poor transient response. Torque and flux ripples are reduced by replacing hysteresis controller and switching table with Fuzzy logic switching controller (FDTC). In FDTC the selected switching vector is applied for the complete switching time period. The FDTC steady state performance can be improved by using duty ratio controller, the selected switching vector is applied only for the time determined by the duty ratio (δ) and for the remaining time period zero switching vector is applied. The selection of duty ratio using Fuzzy logic and neural networks is projected in this paper. The effectiveness proposed methods are evaluated using simulation by Matlab/Simulink.
机译:本文介绍了使用具有模糊逻辑和基于神经网络的占空比控制器的模糊逻辑对感应电动机的直接转矩控制的改进。感应电动机的常规DTC(CDTC)具有主要缺点,例如高转矩和磁通波动以及较差的瞬态响应。通过将滞后控制器和切换台替换为模糊逻辑切换控制器(FDTC),可以减少转矩和磁通波动。在FDTC中,所选的开关矢量将应用于整个开关时间段。可以通过使用占空比控制器来改善FDTC稳态性能,仅在由占空比(δ)确定的时间内应用所选的开关矢量,并在剩余时间段内应用零开关矢量。提出了利用模糊逻辑和神经网络对占空比进行选择的方案。所提出的方法的有效性通过Matlab / Simulink的仿真进行了评估。

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