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Observer-based sampled-data control for uncertain nonlinear systems: intelligent digital redesign approach

机译:基于观察者的不确定非线性系统采样数据控制:智能数字化重新设计方法

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In this paper, we concern an intelligent digital redesign(IDR) method for a Takagi-Sugeno (T-S) fuzzy observer based output-feedback control (FOBOFC) system which includes parametric uncertainties. The term IDR is to convert an existing analog control into an equivalent digital counterpart via state-matching. The considered IDR problem is viewed as convex minimization problem of the norm distances between linear operators to be matched and its constructive condition is formulated in terms of linear matrix inequalities (LMIs). The main features of the proposed method are that the state estimation error in the plant dynamics is considered in the IDR condition that plays a crucial role in the performance improvement; the uncertainties in the plant dynamics is shown in the IDR condition by virtue of the bilinear and inversebilinear approximation method; finally, the stability property is preserved by the proposed IDR method.
机译:在本文中,我们关注基于Takagi-Sugeno(T-S)模糊观测器的基于输出反馈控制(FOBOFC)系统的智能数字重新设计(IDR)方法,该系统包括参数不确定性。术语IDR旨在通过状态匹配将现有的模拟控件转换为等效的数字控件。所考虑的IDR问题被视为要匹配的线性算子之间的范数距离的凸最小化问题,其构造条件是根据线性矩阵不等式(LMI)表示的。该方法的主要特点是,在IDR条件下考虑了工厂动态中的状态估计误差,IDR条件对性能的提高起着至关重要的作用。通过双线性和反双线性逼近方法,在IDR条件下显示了植物动力学的不确定性。最后,所提出的IDR方法保持了稳定性。

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