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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Fuzzy sliding mode control based on boundary layer theory for chattering-free and robust induction motor drive
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Fuzzy sliding mode control based on boundary layer theory for chattering-free and robust induction motor drive

机译:基于边界层理论的模糊滑模控制,用于无抖动的鲁棒感应电动机驱动

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摘要

The boundary layer approach is the most popular method to reduce the chattering phenomenon in sliding mode control (SMC) for uncertain nonlinear systems. This paper applies the fuzzy sliding mode structure based on the boundary layer theory which is used as speed controller of an indirect field-oriented control (IFOC) of an induction motor (IM) drive. A fuzzy inference system is assigned for reaching the controller part of the fuzzy sliding mode controller (FSMC) to eliminate the chattering phenomenon in spite of the small and large uncertainties in the system. The applied fuzzy system acts like a saturation function technique in a thin boundary layer near the sliding surface so that the stability of the system is guaranteed. Also, the equivalent control part is estimated to avoid the computational burden by an averaging filter. On the other hand, the averaging filter assists to improve the tracking performance despite the possibility of large uncertainties in the system so that the stability of the system is guaranteed. The main advantages of the proposed chattering-free speed controller are robustness to parameter variations and external load disturbance. The simulation results are shown to verify the effectiveness of the proposed speed controller, and its advantages are shown in comparison with the FSMC system and the conventional SMC.
机译:边界层方法是减少不确定非线性系统滑模控制(SMC)中颤振现象的最流行方法。本文应用基于边界层理论的模糊滑模结构,将其作为感应电动机(IM)驱动器的间接磁场定向控制(IFOC)的速度控制器。分配了模糊推理系统以到达模糊滑模控制器(FSMC)的控制器部分,以消除抖动现象,尽管系统存在不确定性。所应用的模糊系统在滑动表面附近的薄边界层中像饱和函数技术一样起作用,从而确保了系统的稳定性。而且,等效控制部分被估计以避免由平均滤波器引起的计算负担。另一方面,尽管系统中存在很大的不确定性,但平均滤波器仍有助于改善跟踪性能,从而保证了系统的稳定性。所提出的无抖动速度控制器的主要优点是对参数变化和外部负载干扰的鲁棒性。仿真结果表明了所提出的速度控制器的有效性,并且与FSMC系统和常规SMC相比,其优势也得到了展示。

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