Organically-structured control of large-scale systems with expanding construction based on state observer

Xiaohua Li, Yongbo Huang
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Abstract

Organically-structured control problem based on state observer for a class of large-scale systems with expanding construction is studied in this paper. The problem is how to design the local state feedback controller and observer of the new subsystem added into original large scale system, but not changing the decentralized state feedback control laws of original construction, so that both the new subsystem and the resultant expanded system are robust decentralized connective stable. First, the mathematical model of the large-scale system with expanding construction, which possesses the state observers, is analyzed. Then, the sufficient condition of the robust decentralized connective stabilization for the expanding construction of large-scale systems is deduced by taking Lyapunov theory and LMI approach, and the problem is transformed into how to solve a linear matrix inequality (LMI). The design Method of the organically-structured controller and observer of the expanding construction is given. At last, a simulation example shows the effectiveness of presented method.
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基于状态观测器的大规模系统有机结构控制与扩展构造
研究了一类具有扩展结构的大系统的基于状态观测器的有机结构控制问题。问题是如何在不改变原有结构的分散状态反馈控制律的前提下,设计加入原有大系统的新子系统的局部状态反馈控制器和观测器,使新子系统和扩展后的系统都是鲁棒分散连接稳定的。首先,分析了具有状态观测器的具有扩展结构的大系统的数学模型。然后,利用李雅普诺夫理论和LMI方法,推导了大系统扩展构造鲁棒分散连接镇定的充分条件,并将问题转化为如何求解线性矩阵不等式(LMI)。给出了扩展结构的有机结构控制器和观测器的设计方法。最后通过仿真实例验证了该方法的有效性。
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