利用最大原理主动控制梁的受迫振动

I. Kucuk, Kenan Yildirim, I. Sadek, S. Adali
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引用次数: 2

摘要

提出了开环最优控制问题,并将其应用于用压电作动器实现控制的简支梁受迫振动的抑制。导出了一个极大值原理来获得最优控制律。引入了一个凸性能指标作为位移和速度的加权二次泛函,该凸性能指标要求在固定的终端时间达到最小,并带有与最小驱动能量消耗相关的惩罚项。文中给出的极大值原理涉及一个包含伴随变量和控制函数的哈密顿量。该问题被简化为求解一个状态变量和伴随变量受边界、初始和终止条件约束的耦合偏微分方程组。求解方法采用傅立叶正弦展开法,将原问题转化为集总参数系统的最优控制问题,其中最优控制由导出的极大值原理确定。算例验证了该方法的适用性和有效性。
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Active control of forced vibrations in a beam via Maximum principle
Open-loop optimal control problem is formulated and applied to damp out the forced vibrations of a simply supported beam where the control action is implemented using piezoelectric actuators. A Maximum principle is derived to obtain the optimal control law. A convex performance index is introduced as a weighted quadratic functional of the displacement and velocity which is to be minimized at a fixed terminal time with a penalty term related to the minimum expenditure of actuation energy. The Maximum principle given in this paper involves a Hamiltonian which contains an adjoint variable and the control function. The problem is reduced to solving a system of coupled partial differential equations for the state variable and the adjoint variable subject to boundary, initial and terminal conditions. The method of solution involves Fourier-sine expansion to transform the original problem into the optimal control of lumped parameter system where the optimal control is determined by the derived Maximum principle. A numerical example is given to demonstrate the applicability and the efficiency of the proposed method.
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