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Robust stability and stabilization for singular systems with statedelay and parameter uncertainty

机译:具有状态延迟和参数不确定性的奇异系统的鲁棒稳定性和稳定性

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摘要

Considers the problems of robust stability and stabilization for uncertain continuous singular systems with state delay. The parametric uncertainty is assumed to be norm bounded. The purpose of the robust stability problem is to give conditions such that the uncertain singular system is regular, impulse free, and stable for all admissible uncertainties, while the purpose of the robust stabilization is to design a state feedback control law such that the resulting closed-loop system is robustly stable. These problems are solved via the notions of generalized quadratic stability and generalized quadratic stabilization, respectively. Necessary and sufficient conditions for generalized quadratic stability and generalized quadratic stabilization are derived. A strict linear matrix inequality (LMI) design approach is developed. An explicit expression for the desired robust state feedback control law is also given. Finally, a numerical example is provided to demonstrate the application of the proposed method
机译:考虑具有状态延迟的不确定连续奇异系统的鲁棒稳定性和稳定性问题。假定参数不确定性是范数有界的。鲁棒稳定性问题的目的是给出条件,使得不确定的奇异系统是规则的,无脉冲的,并且对于所有可接受的不确定性都是稳定的,而鲁棒稳定的目的是设计一个状态反馈控制定律,以使结果闭合回路系统鲁棒稳定。这些问题分别通过广义二次稳定性和广义二次稳定的概念来解决。得出了广义二次稳定性和广义二次稳定的充要条件。开发了严格的线性矩阵不等式(LMI)设计方法。还给出了所需鲁棒状态反馈控制律的明确表示。最后,通过数值例子说明了该方法的应用。

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