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首页> 外文期刊>Journal of vibration and control: JVC >Optimal control of a beam with Kelvin-Voigt damping subject to forced vibrations using a piezoelectric patch actuator
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Optimal control of a beam with Kelvin-Voigt damping subject to forced vibrations using a piezoelectric patch actuator

机译:使用压电贴片致动器,通过开尔文-沃格特阻尼对梁进行最优控制,使其受到强制振动

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摘要

A maximum principle is derived for the optimal control of a beam with Kelvin-Voigt damping subject to an external excitation with the control exercised by means of piezoelectric patch actuators. The objective functional is defined as a weighted quadratic functional of the displacement and velocity which is to be minimized at a given terminal time. A penalty term is also part of the objective functional defined as the control voltage used in the control process. The maximum principle makes use of a Hamiltonian defined in terms of an adjoint variable and the control function. The optimal control problem is expressed as a coupled system of partial differential equations in terms of state, adjoint and control variables subject to boundary, initial and terminal conditions. The solution is obtained by expanding the state and adjoint variables in terms of eigenfunctions and determining the optimal control using the maximum principle. Numerical examples are given to demonstrate the applicability and the efficiency of the proposed method.
机译:推导了最大原理,以最佳方式控制具有开尔文-沃格特阻尼的梁,使其受到外部激励,并借助压电膜片致动器进行控制。目标函数定义为位移和速度的加权二次函数,应在给定的最终时间将其最小化。惩罚项也是目标函数的一部分,该目标函数定义为控制过程中使用的控制电压。最大原理利用了根据伴随变量和控制函数定义的哈密顿量。最优控制问题表示为状态,伴随和受边界,初始和终止条件控制变量的偏微分方程的耦合系统。通过根据特征函数扩展状态变量和伴随变量并使用最大原理确定最佳控制来获得解决方案。数值算例表明了该方法的适用性和有效性。

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