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An Adaptive Generalized Predictive Control Method for Nonlinear Systems Based on ANFIS and Multiple Models

机译:基于ANFIS和多模型的非线性系统自适应广义预测控制方法。

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In this paper, an adaptive generalized predictive control method using adaptive-network-based fuzzy-inference system (ANFIS) and multiple models is proposed for a class of uncertain discrete-time nonlinear systems with unstable zero-dynamics. The proposed controller consists of a linear and robust generalized predictive adaptive controller, a nonlinear generalized predictive adaptive controller based on ANFIS, and a switching mechanism. It has been shown that the linear generalized predictive adaptive controller can ensure the boundedness of the input and output signals, and the nonlinear generalized predictive controller can improve the transient performance of the system. By switching between the two earlier described controllers, the switching mechanism can simultaneously improve the performance and ensure the closed-loop stability. Moreover, the method has relaxed the global boundedness assumption of the higher order nonlinear term and established the analysis of stability and convergence of the closed-loop system. In the proposed controller, ANFIS is adopted to estimate and compensate the unmodeled dynamics, which avoids some possible flaws of a backpropagation (BP) neural network. Simulation results have demonstrated the superiority of the proposed method and verified the theoretical analysis.
机译:针对一类具有零动力学不稳定的不确定离散时间非线性系统,提出了一种基于自适应网络的模糊推理系统(ANFIS)和多种模型的自适应广义预测控制方法。所提出的控制器由线性鲁棒的广义预测自适应控制器,基于ANFIS的非线性广义预测自适应控制器和切换机制组成。结果表明,线性广义预测自适应控制器可以保证输入和输出信号的有界性,非线性广义预测控制器可以提高系统的暂态性能。通过在上述两个控制器之间进行切换,切换机制可以同时提高性能并确保闭环稳定性。此外,该方法放宽了高阶非线性项的全局有界假设,并建立了闭环系统的稳定性和收敛性分析。在所提出的控制器中,采用ANFIS来估计和补偿未建模的动力学,从而避免了反向传播(BP)神经网络的某些可能的缺陷。仿真结果证明了该方法的优越性,并验证了理论分析。

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