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Fuzzy supervisor approach on logic-based switching H_2/H_∞

机译:基于逻辑的切换H_2 /H_∞的模糊监控器方法

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摘要

In this paper the synthesis of a logic-based switching H_2/H_∞ state-feedback controller for continuous-time linear time-invariant (LTI) singular perturbation systems is considered which achieves a minimum limit on the H_2 performance level, while satisfying the H_∞ performance. The proposed hybrid control scheme is based on a fuzzy supervisor, which manages the combination of controllers. A convex linear matrix inequality (LMI)-based formulation of the fast and slow subsystem controllers leads to a e-independent structure which ensures a good performance in both the transient phase and the steady-state phase. The stability analysis uses the Lyapunov technique, inspired from switching system theory, to prove that the system with the proposed controller remains globally stable, despite the configuration (controller) changing. Simulations show that the proposed non-linear scheme composed of two low-order controllers improves the performance in comparison with the linear optimal scheme with higher order designed for a full-order system.
机译:本文考虑了连续时间线性时不变(LTI)奇异摄动系统的基于逻辑的H_2 /H_∞切换状态反馈控制器的综合,该系统在满足H_ ∞性能。所提出的混合控制方案基于模糊管理器,该管理器管理控制器的组合。基于凸线性矩阵不等式(LMI)的快速子系统控制器和慢速子系统控制器的公式导致了e独立结构,从而确保了在瞬态阶段和稳态阶段均具有良好的性能。稳定性分析使用Lyapunov技术(受切换系统理论的启发)证明,尽管配置(控制器)发生了变化,带有建议控制器的系统仍保持全局稳定。仿真表明,与为全阶系统设计的高阶线性最优方案相比,由两个低阶控制器组成的非线性方案提高了性能。

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