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首页> 外文期刊>International Journal of Control >Dissipative control for state-saturated discrete time-varying systems with randomly occurring nonlinearities and missing measurements
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Dissipative control for state-saturated discrete time-varying systems with randomly occurring nonlinearities and missing measurements

机译:具有随机发生的非线性和缺失量的状态饱和离散时变系统的耗散控制

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In this paper, the dissipative control problem is investigated for a class of discrete time-varying systems with simultaneous presence of state saturations, randomly occurring nonlinearities as well as multiple missing measurements. In order to render more practical significance of the system model, some Bernoulli distributed white sequences with known conditional probabilities are adopted to describe the phenomena of the randomly occurring nonlinearities and the multiple missing measurements. The purpose of the addressed problem is to design a time-varying output-feedback controller such that the dissipativity performance index is guaranteed over a given finite-horizon. By introducing a free matrix with its infinity norm less than or equal to 1, the system state is bounded by a convex hull so that some sufficient conditions can be obtained in the form of recursive nonlinear matrix inequalities. A novel controller design algorithm is then developed to deal with the recursive nonlinear matrix inequalities. Furthermore, the obtained results are extended to the case when the state saturation is partial. Two numerical simulation examples are provided to demonstrate the effectiveness and applicability of the proposed controller design approach.
机译:在本文中,研究了同时存在状态饱和,随机发生的非线性以及多次丢失测量的一类离散时变系统的耗散控制问题。为了使系统模型更具实际意义,采用了一些具有已知条件概率的伯努利分布的白色序列来描述随机发生的非线性现象和多次丢失测量的现象。解决的问题的目的是设计一个时变输出反馈控制器,以便在给定的有限水平范围内保证耗散性能指标。通过引入其无穷范数小于或等于1的自由矩阵,系统状态由凸包界定,从而可以以递归非线性矩阵不等式的形式获得一些充分条件。然后,开发了一种新颖的控制器设计算法来处理递归非线性矩阵不等式。此外,所获得的结果扩展到状态饱和是部分饱和的情况。提供了两个数值仿真示例,以证明所提出的控制器设计方法的有效性和适用性。

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