保证暂态和稳态误差边界的非仿射系统鲁棒自适应模糊控制

C. Bechlioulis, G. Rovithakis
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引用次数: 23

摘要

研究了具有保证性能的单输入单输出未知非仿射系统在加性输入干扰下的跟踪问题。通过规定的性能,我们的意思是跟踪误差应该收敛到一个预定义的任意小的残差集,收敛速率不小于一个预先指定的值,表现出小于一个足够小的预先指定常数的最大超调。结合输出误差变换,得到一个变换后的系统,证明了该系统的有界性足以解决问题。利用模糊系统近似未知系统的非线性,设计光滑鲁棒自适应模糊控制器,实现变换后的系统和闭环中所有信号的有界性。系统性能与控制器增益无关,不需要几乎完美的模糊建模。仿真研究阐明并验证了该方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Robust adaptive fuzzy control of nonaffine systems guaranteeing transient and steady state error bounds
We consider the tracking problem of Single Input Single Output, unknown, nonaffine systems with guaranteed prescribed performance in the presence of additive input disturbances. By prescribed performance we mean that the tracking error should converge to a predefined arbitrarily small residual set, with convergence rate no less than a prespecified value, exhibiting a maximum overshoot less than a sufficiently small preassigned constant. An output error transformation is incorporated to produce a transformed system the boundedness of which is proven to be sufficient to solve the problem. A fuzzy system is utilized to approximate the unknown system nonlinearities and consequently a smooth robust adaptive fuzzy controller is designed to achieve the boundedness of the transformed system as well as of all signals in the closed loop. System performance is independent of controller gains, while no almost perfect fuzzy modeling is required. Simulation studies clarify and verify the approach.
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