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首页> 外文期刊>Journal of control science and engineering >H∞Loop Shaping Control of Input Saturated Systems with Norm-Bounded Parametric Uncertainty
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H∞Loop Shaping Control of Input Saturated Systems with Norm-Bounded Parametric Uncertainty

机译:具有范数有界参数不确定性的输入饱和系统的H∞回路成形控制

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This paper proposes a gain-scheduling control design strategy for a class of linear systems with the presence of both input saturation constraints and norm-bounded parametric uncertainty. LMI conditions are derived in order to obtain a gain-scheduled controller that ensures the robust stability and performance of the closed loop system. The main steps to obtain such a controller are given. Differently from other gain-scheduled approaches in the literature, this one focuses on the problem ofH∞loop shaping control design with input saturation nonlinearity and norm-bounded uncertainty to reduce the effect of the disturbance input on the controlled outputs. Here, the design problem has been formulated in the four-blockH∞synthesis framework, in which it is possible to describe the parametric uncertainty and the input saturation nonlinearity as perturbations to normalized coprime factors of the shaped plant. As a result, the shaped plant is represented as a linear parameter-varying (LPV) system while the norm-bounded uncertainty and input saturation are incorporated. This procedure yields a linear parameter-varying structure for the controller that ensures the stability of the polytopic LPV shaped plant from the vertex property. Finally, the effectiveness of the method is illustrated through application to a physical system: a VTOL “vertical taking-off landing” helicopter.
机译:本文针对一类同时具有输入饱和约束和范数界参数不确定性的线性系统,提出了一种增益调度控制设计策略。得出LMI条件是为了获得一个增益预定的控制器,该控制器可确保闭环系统的鲁棒稳定性和性能。给出了获得这种控制器的主要步骤。与文献中的其他增益调度方法不同,该方法着重于具有输入饱和非线性和范数有界不确定性的H∞环路整形控制设计问题,以减少扰动输入对受控输出的影响。在此,设计问题已在四段式H∞综合框架中提出,其中可以将参数不确定性和输入饱和非线性描述为对成形植物的归一化互质因子的扰动。结果,将成形植物表示为线性参数变化(LPV)系统,同时并入了范数界的不确定性和输入饱和度。此过程为控制器生成了线性可变参数结构,该结构可从顶点属性中确保多糖LPV成形植物的稳定性。最后,通过应用于物理系统:VTOL“垂直起飞降落”直升机,说明了该方法的有效性。

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