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Improvement of adaptive fuzzy control to adjust speed for a doubly fed induction motor drive (DFIM)

机译:改进自适应模糊控制调节双馈感应电动机驱动速度(DFIM)

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This paper presents the doubly fed induction motor (DFIM) speed control using adaptive fuzzy logic PI (AFLPI) controller to give better dynamic performances. Before the advent of modern technology, integral proportional based current controller is usually used due to its simplicity. But, the performance of closed-loop control is largely influenced by this type of speed and torque controllers used, as long as the PI controllers suffer from tuning problem. To overcome the problem, a new technique AFLPI based speed controller for direct field oriented control fed DFIM to get fast speed response and to minimize the torque ripple. The application of this type of control is very satisfactory to replace the conventional PI controller and, even the fuzzy logic PI (FLPI) controller. The performance of the field oriented controlled DFIM drive has simulated at different operating conditions using the AFLPI controller and the obtained results are compared with FLPI controller and conventional PI controller. Accordingly, an improvement in dynamic and robustness is clearly appears in AFLPI controller simulation results compared to the others aforementioned controllers. Simulation Results are presented for the three techniques using Matlab/Simulink to prove the dynamic performances and robustness.
机译:本文介绍了使用自适应模糊逻辑PI(AFLPI)控制器的双馈感应电机(DFIM)速度控制,以提供更好的动态性能。在现代技术出现之前,由于其简单性,通常使用整体比例的基于电流控制器。但是,只要PI控制器遭受调谐问题,闭环控制的性能很大程度上受到这种类型的速度和扭矩控制器的影响。为了克服这个问题,一种用于直接场取向控制的基于AFLPI的速度控制器,用于获得快速响应并最小化扭矩脉动。这种类型的控制的应用非常令人满意,可以更换传统的PI控制器,甚至是模糊逻辑PI(FLPI)控制器。使用AFLPI控制器在不同的操作条件下模拟现场定向的受控DFIM驱动器的性能,并将所得结果与FLPI控制器和传统PI控制器进行比较。因此,与其他上述控制器相比,在AFLPI控制器仿真结果中显而出现了动态和鲁棒性的改进。使用MATLAB / SIMULINK的三种技术提出了仿真结果,以证明动态性能和鲁棒性。

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