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Direct Torque Control Induction Motor Drive for Speed Estimation Using Modified Particle Swarm Optimization Algorithm

机译:使用修改粒子群优化算法进行直接扭矩控制感应电动机驱动器,用于速度估计

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摘要

In this study, the current and flux linkage of a stator were used to develop a speed estimation direct torque control induction motor (IM) drive, and the speed estimation signal was derived from the stator flux observer. Hall effect current sensors were used to obtain the stator current from the IM. Voltage space vector pulse width modulation was used to establish a voltage source inverter (VSI) in place of a traditional switching table VSI to reduce the ripples of both the stator current and electromagnetic torque. The Lyapunov stability theory was used to design the stator flux observer, and the gain matrix of this observer was acquired using the modified particle swarm optimization algorithm. The operation speed was extended to greater than the base speed using field weakening. The Matlab/Simulink© toolbox was used to develop this simulation system and all the control algorithms were realized using a Texas Instruments DSP 6713-and-F2812 control card to generate pulse width modulation signals for the power stage to the actuate IM and validate this approach. Both simulation and experimental results confirmed the effectiveness of the proposed system.
机译:在该研究中,定子的电流和磁通连杆用于开发速度估计直接扭矩控制感应电动机(IM)驱动,并且速度估计信号源自定子通量观测器。霍尔效应电流传感器用于获得来自IM的定子电流。电压空间矢量脉冲宽度调制用于建立电压源逆变器(VSI),代替传统的切换台VSI,以减小定子电流和电磁扭矩的涟漪。利用Lyapunov稳定性理论用于设计定子磁通观测器,并且使用修改的粒子群优化算法来利用该观察者的增益矩阵。使用场弱化,操作速度延伸到大于基速。 MATLAB / SIMULINK©Toolbox用于开发此仿真系统,并且所有控制算法都使用TEXAS Instruments DSP 6713-and-F2812控制卡实现,以为动力级生成脉冲宽度调制信号,并验证这种方法。仿真和实验结果都证实了所提出的系统的有效性。

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