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Robust reliable control for systems with random actuator fault and probabilistic nonlinearity with new characters

机译:具有随机执行器故障和概率非线性且具有新特性的系统的鲁棒可靠控制

摘要

In this study, the reliable control for time-varying systems with random actuator faults and probabilistic nonlinearities is investigated. The system under consideration has the following main features: (1) nonlinearities with new characters. The probability information of nonlinearities belonging to different varying bounds is used; (2) its multi-actuators are subject to various possible faults/failures, and failure rates can vary in some measure; and (3) there are uncertainties in the plant model parameters. Covering these features, a comprehensive model is developed for uncertain time-varying delay systems. By employing the Lyapunov functional method, free-weighting matrix method, and the linear matrix inequality technique, we can obtain several delay-distribution-dependent sufficient conditions to ensure the exponentially mean square stability of the system. Those conditions are characterized in terms of linear matrix inequalities, and the reliable controller feedback gain can be solved by the standard numerical software. A simulation example is presented to show the effectiveness and applicability of the results.
机译:在这项研究中,研究了具有随机执行器故障和概率非线性的时变系统的可靠控制。所考虑的系统具有以下主要特征:(1)具有新特性的非线性。使用属于不同变化范围的非线性的概率信息; (2)其多执行器容易遭受各种可能的故障/故障,并且故障率在某种程度上可能有所不同; (3)工厂模型参数存在不确定性。涵盖这些功能,针对不确定的时变延迟系统开发了一个综合模型。通过使用Lyapunov函数法,自由加权矩阵法和线性矩阵不等式技术,我们可以获得依赖于延迟分布的几个充分条件,以确保系统的指数均方稳定性。这些条件以线性矩阵不等式为特征,可靠的控制器反馈增益可通过标准数值软件解决。给出了一个仿真例子来说明结果的有效性和适用性。

著录项

  • 作者

    Wong WK; Tian E; Yue D; Au RWM;

  • 作者单位
  • 年度 2012
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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