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A new method to minimize the chattering phenomenon in sliding mode control based on intelligent control for induction motor drives

机译:基于智能控制的滑模控制中最小化颤动现象的新方法

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This paper presents new method toward the design of hybrid control with sliding-mode (SMC) plus fuzzy logic control (FLC) for induction motors. As the variations of both control system parameters and operating conditions occur, the conventional control methods may not be satisfied further. Sliding mode control is robust with respect to both induction motor parameter variations and external disturbances. By embedding a fuzzy logic control into the sliding mode control, the chattering (torque-ripple) problem with varying parameters, which are the main disadvantage in sliding-mode control, can be suppressed, Simulation results of the proposed control theme present good dynamic and steady-state performances as compared to the classical SMC from aspects for torque-ripple minimization, the quick dynamic torque response and robustness to disturbance and variation of parameters.
机译:本文提出了一种新的设计方法,用于感应电动机的滑模(SMC)加模糊逻辑控制(FLC)混合控制设计。随着控制系统参数和操作条件的变化,传统的控制方法可能无法得到进一步满足。滑模控制在感应电动机参数变化和外部干扰方面均非常可靠。通过将模糊逻辑控制嵌入到滑模控制中,可以抑制参数变化的颤动(转矩脉动)问题,这是滑模控制的主要缺点,所提出的控制主题的仿真结果具有良好的动态性和稳定性。从最小化转矩纹波,快速动态转矩响应以及对干扰和参数变化的鲁棒性等方面来看,与经典SMC相比,其稳态性能更高。

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