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首页> 外文期刊>International journal of systems science >Optimally robust H_∞ polynomial fuzzy controller design using quantum-inspired evolutionary algorithm
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Optimally robust H_∞ polynomial fuzzy controller design using quantum-inspired evolutionary algorithm

机译:基于量子启发式进化算法的最优鲁棒H_∞多项式模糊控制器设计

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摘要

This paper proposes an optimally robust H polynomial fuzzy controller design using quantum-inspired evolutionary algorithm (QEA) for continuous/discrete time polynomial fuzzy systems with model uncertainties and external disturbances. To improve control performance, QEA is adopted to evolve optimal control gains with a fitness function that is defined by performance requirements. The stability and robustness of the control system are then guaranteed by the proposed robust H-infinity stability conditions, which are formed by the sum of squares (SOS) method. By using the principle of copositivity, novel relaxed SOS-based stability conditions are derived to reduce the conservativeness of solving SOS-based stability conditions, while the feasible solution space is broadened. Four numerical examples demonstrate the effectiveness of the proposed approaches.
机译:本文针对具有模型不确定性和外部干扰的连续/离散时间多项式模糊系统,提出了一种基于量子启发进化算法(QEA)的最优鲁棒H多项式模糊控制器设计。为了提高控制性能,采用QEA通过性能要求定义的适应度函数来演化最佳控制增益。然后,通过提出的鲁棒H无限稳定性条件来保证控制系统的稳定性和鲁棒性,该条件由平方和(SOS)方法形成。利用共性原理,推导了新颖的,基于SOS的松弛稳定条件,减少了求解基于SOS的稳定条件的保守性,同时拓宽了可行的求解空间。四个数值例子证明了所提出方法的有效性。

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