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Adaptive hybrid intelligent control for uncertain nonlinear dynamical systems

机译:不确定非线性动力系统的自适应混合智能控制

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A new hybrid direct/indirect adaptive fuzzy neural network (FNN) controller with a state observer and supervisory controller for a class of uncertain nonlinear dynamic systems is developed in this paper. The hybrid adaptive FNN controller, the free parameters of which can be tuned on-line by an observer-based output feedback control law and adaptive law, is a combination of direct and indirect adaptive FNN controllers. A weighting factor, which can be adjusted by the tradeoff between plant knowledge and control knowledge, is adopted to sum together the control efforts from indirect adaptive FNN controller and direct adaptive FNN controller. Furthermore, a supervisory controller is appended into the FNN controller to force the state to be within the constraint set. Therefore, if the FNN controller cannot maintain the stability, the supervisory controller starts working to guarantee stability. On the other hand, if the FNN controller works well, the supervisory controller will be deactivated. The overall adaptive scheme guarantees the global stability of the resulting closed-loop system in the sense that all signals involved are uniformly bounded. Two nonlinear systems, namely, inverted pendulum system and Chua's (1989) chaotic circuit, are fully illustrated to track sinusoidal signals. The resulting hybrid direct/indirect FNN control systems show better performances, i.e., tracking error and control effort can be made smaller and it is more flexible during the design process.
机译:针对一类不确定的非线性动力学系统,研究了一种新型的带有状态观测器和监督控制器的混合直接/间接自适应模糊神经网络控制器。混合自适应FNN控制器是直接和间接自适应FNN控制器的组合,其自由参数可以通过基于观察者的输出反馈控制律和自适应律进行在线调整。采用权重因子,可以通过工厂知识和控制知识之间的权衡进行调整,以将间接自适应FNN控制器和直接自适应FNN控制器的控制效果相加。此外,将监视控制器附加到FNN控制器中,以强制状态进入约束集。因此,如果FNN控制器无法维持稳定性,则监督控制器将开始工作以确保稳定性。另一方面,如果FNN控制器运行良好,则将停用监督控制器。在涉及的所有信号均受统一限制的意义上,总体自适应方案可确保所得闭环系统的全局稳定性。充分说明了两个非线性系统,即倒立摆系统和Chua(1989)的混沌电路,以跟踪正弦信号。最终的混合式直接/间接FNN控制系统表现出更好的性能,即在设计过程中跟踪误差和控制工作可以做得更小并且更灵活。

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