Hybrid fuzzy control of linear and nonlinear systems

Y. Sun, M. Er
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引用次数: 6

Abstract

A hybrid fuzzy controller suitable for controlling both linear and nonlinear systems is proposed. The proposed controller, comprising a linear proportional integral derivative (PID) controller and a linear fuzzy logic controller, employs genetic algorithms to facilitate optimal tuning of the controller gains. A two-input dynamic linear fuzzy logic controller with linearly defined fuzzy space is developed to replace the conventional PI controller in the PID connective structure. Closed-form analysis shows that the proposed fuzzy logic controller is capable of generating nonlinear output by using varying gains and dynamic fuzzy rule base. Simulation results for a direct-current motor and a tactical missile model demonstrate that the proposed controller outperforms other existing controllers, is robust and has great potential in many other industrial applications.
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线性与非线性系统的混合模糊控制
提出了一种适用于控制线性和非线性系统的混合模糊控制器。该控制器由线性比例积分微分(PID)控制器和线性模糊逻辑控制器组成,采用遗传算法实现控制器增益的最优整定。提出了一种具有线性定义模糊空间的双输入动态线性模糊控制器,以取代传统PID连接结构中的PI控制器。封闭形式分析表明,该模糊控制器利用变增益和动态模糊规则库产生非线性输出。对直流电机和战术导弹模型的仿真结果表明,所提出的控制器性能优于其他现有控制器,具有鲁棒性,在许多其他工业应用中具有很大的潜力。
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