基于混合计算技术和变结构控制的双馈异步电机动态性能改进

Mohamed Yazid Zidani
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引用次数: 0

摘要

基于变结构系统理论的滑模控制方法已广泛应用于非线性系统的鲁棒控制。然而,这种控制有一个本质上的不便,即由不连续控制部分引起的抖振现象。为了减少抖振现象的影响,二阶滑模(SOSM)似乎是一个很有吸引力的解决方案。为了消除抖振残留现象,提出了一种基于模糊二阶滑模控制(FSOSMC)的新型控制方案。该模糊二阶滑模控制器是针对双馈异步电动机(DFIM)的速度控制而设计的,该控制器基于解耦控制,以增强其在负载转矩和参数变化等不同工况下的鲁棒性。各种情况下的仿真结果表明,所提出的控制方法在大功率DFIM变速运行时具有精度、快速性和稳定性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dynamic Performance Improvement of Doubly Fed Induction Motor Based on Hybrid Computational Technique and Variable Structure Control
The sliding mode control (SMC) methodology based on the theory of variable structure systems has been widely used for robust control of nonlinear systems. Nevertheless, this type of control has an essential inconvenience, which is the chattering phenomenon caused by the discontinuous control part. In order to reduce the effects of the chattering phenomenon, second order sliding mode (SOSM) seems to be a very attractive solution. To eliminate the remains of chattering phenomenon, a new control scheme based on fuzzy second order sliding mode control (FSOSMC) is proposed in this paper. This fuzzy second order sliding mode controller is destined to the speed control of doubly fed induction motor (DFIM) which is based on the decoupling control to enhance robustness under different operating conditions such as load torque and in the presence of parameters variation. The simulation results for various scenarios show the performances of the proposed control in terms of, precision, rapidity and stability for the high powers DFIM operating at variable speeds.
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