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Robust self-learning fuzzy controller design for a class of nonlinear MIMO systems

机译:一类非线性MIMO系统的鲁棒自学习模糊控制器设计

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A new learning paradigm that can be applied for the design of a fuzzy logic-based learning controller that is robust to external signals such as disturbances and set-point changes is proposed in the paper. It is well known that the self-organizing fuzzy controller proposed by Prosy and Madman is sensate to external signals. Such a phenomenon may be observed in other types of direct fuzzy logic-based learning controllers that utilize an adaptation scheme in which the location information of the current error state vector determines the degree of adaptation that should be made in the learning controller. To resolve the problem of sensitivity to external signals, it is proposed that learning and modification of the controller be made in consideration of the motional trend of the error state vector as well as its location information. This paradigms is adopted in the design of a new robust self-learning fuzzy controller for a class of nonlinear MIMO systems. The well-known techniques of sliding mode control and the fuzzy decision making method are utilized to implement the proposed learning scheme in the fuzzy learning controller. Via simulation study and experimental results, the proposed learning controller is verified to be robust in the presence of external disturbances.
机译:本文提出了一种新的学习范式,可以应用于基于模糊逻辑的学习控制器的设计,该控制器对外部信号(例如干扰和设定点变化)具有鲁棒性。众所周知,Prosy和Madman提出的自组织模糊控制器对外部信号很敏感。在使用自适应方案的其他类型的基于直接模糊逻辑的学习控制器中,可能会观察到这种现象,其中,当前错误状态向量的位置信息确定在学习控制器中应进行的自适应程度。为了解决对外部信号的敏感性的问题,提出考虑误差状态矢量的运动趋势及其位置信息来进行控制器的学习和修改。在针对一类非线性MIMO系统的新型鲁棒自学习模糊控制器的设计中采用了这种范例。利用著名的滑模控制技术和模糊决策方法,在模糊学习控制器中实现了所提出的学习方案。通过仿真研究和实验结果,验证了所提出的学习控制器在存在外部干扰的情况下具有鲁棒性。

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