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Discrete Mechanics for 1-dimensional Distributed Parameter Mechanical Systems under Free Boundary Conditions and Its Application to Vibration Suppression Control of Free-fixed Strings

机译:自由边界条件下的1维分布参数机械系统的离散力学及其在自由固定字符串的振动抑制控制中的应用

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摘要

This study develops discrete mechanics for 1-dimensional distributed parameter mechanical systems under free boundary conditions, and a control method for the systems based on a blending method of discrete mechanics and nonlinear optimization. First, under the assumption on free boundary conditions, discrete Euler-Lagrange equations and boundary equations are derived by discrete Hamilton's principle. Next, for the discrete Euler-Lagrange equations with control inputs and boundary equations, a nonlinear optimal control problem with constraints by setting an objective function, and initial and boundary conditions is formulated. Then, a vibration suppression control problem for a free-fixed string is considered as a physical example. As a result, it turns out that vibration of the string is suppressed and the whole of the system is stabilized by the proposed method.
机译:本研究在自由边界条件下开发了三维分布式参数机械系统的离散力学,以及基于离散力学和非线性优化的混合方法的系统的控制方法。首先,在自由边界条件下的假设下,通过离散的汉密尔顿原则来源离散的欧拉拉格朗日方程和边界方程。接下来,对于具有控制输入和边界方程的离散Euler-Lagrange方程,通过设定目标函数,制定具有约束的非线性最佳控制问题,以及初始和边界条件。然后,将用于自由固定串的振动抑制控制问题被认为是物理示例。结果,事实证明,串的振动被抑制,并且通过所提出的方法稳定整个系统。

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