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Two-Degrees of Freedom and Variable Structure Controllers for Induction Motor Drives

机译:感应电动机驱动器的二自由度和可变结构控制器

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This paper presents a two-degrees-of-Freedom (2DOF) and variable structure control (VSC) schemes for induction motor (IM) drives. The designed VSC incorporates independent feedback and feedforward terms as 2DOF control principle. This structure improves the response of the proposed VSC under speed reference tracking and load disturbance changes. Stability of VSC using Lyapunov theory is discussed. Due to the variable nature of the switching function of VSC, two conditions to ensure Lyapunov stability candidate are derived based on the error signal. A design criterion for the parameters of VSC are introduced to guarantee the stability. The complete IM drive system with the proposed VSC controller is built using MATLAB/Simulink. A laboratory prototype is executed experimentally using DSP-DS1104 control board. All controllers are implemented practically. Simulation and experimental results are provided under different working conditions. Performance evaluation of classic control schemes and the proposed VSC approach is presented. The proposed VSC approach gives superior behavior under speed reference variations and torque disturbances. The disturbances using the proposed controller are strongly suppressed compared to classic 2DOF control scheme.
机译:本文提出了感应电动机(IM)驱动器的两自由度(2DOF)和可变结构控制(VSC)方案。设计的VSC将独立的反馈和前馈项纳入2DOF控制原理。这种结构改善了提出的VSC在速度参考跟踪和负载扰动变化下的响应。利用李雅普诺夫理论讨论了VSC的稳定性。由于VSC切换功能的可变性,基于误差信号得出了确保Lyapunov稳定性候选的两个条件。引入了VSC参数的设计准则以保证稳定性。使用MATLAB / Simulink构建具有建议的VSC控制器的完整IM驱动系统。使用DSP-DS1104控制板以实验方式执行实验室原型。所有控制器都已实际实施。在不同的工作条件下提供了仿真和实验结果。提出了经典控制方案和提出的VSC方法的性能评估。所提出的VSC方法在速度基准变化和转矩干扰下具有出色的性能。与经典的2DOF控制方案相比,使用提出的控制器的干扰得到了显着抑制。

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