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Adaptive optimized DTC-SVM using metaheuristic Bat algorithm for DSIM fed by IMC based on robust synergetic speed controller

机译:基于鲁棒协同速度控制器的IMC使用Metaheulistic Bat算法使用Metaheulistic Bat算法的自适应优化DTC-SVM

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摘要

Direct torque control (DTC) suffers from the large ripples of the torque and flux, which leads to deteriorating the system performances. Replacing the conventional back-to-back converter with an indirect matrix converter (IMC) can reduce the torque and flux ripples in interior dual stator induction motor. However, the ripples can be still large, and the low harmonic distortion appears in the input current caused by the lack of synchronization between the two stages of the IMC. In order to overcome this problem with improved dynamic performances (torque, flux ripples, and reducing the low harmonic distortion in the input current), a new DTC based on space vector modulation (SVM) with the synchronization between the two stage of IMC is proposed. On the other hand, an adaptive PI controller based on a gradient descent algorithm using metaheuristic Bat algorithm is presented to generate: the desired stator voltages, and the switching states of the inverter stage by the SVM. Furthermore, the control scheme performance is enhanced by inserting a robust synergetic controller (SC) in the outer loop for speed regulation. The obtained simulation results under different operating conditions illustrate the benefit of the proposed control technique, also, it demonstrates the feasibility of the proposed control approach for real-world systems.
机译:直接扭矩控制(DTC)遭受扭矩和磁通的大涟漪,这导致系统性能劣化。用间接矩阵转换器(IMC)更换传统的背对背转换器可以减小内部双定子感应电动机中的扭矩和焊剂波纹。然而,涟漪仍然很大,并且低谐波失真在IMC的两个阶段之间缺乏同步引起的输入电流中出现。为了克服这种问题,通过改进的动态性能(扭矩,焊剂涟漪和降低输入电流中的低谐波失真),提出了一种基于IMC的两个阶段之间同步的空间向量调制(SVM)的新DTC 。另一方面,呈现了一种基于梯度下降算法的自适应PI控制器,用于产生:所需的定子电压和SVM的逆变器级的切换状态。此外,通过在外环中插入速度调节的强大协同控制器(SC)来增强控制方案性能。所获得的仿真结果在不同的操作条件下说明了所提出的控制技术的益处,而且还展示了真实世界系统所提出的控制方法的可行性。

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