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首页> 外文期刊>Journal of Dynamic Systems, Measurement, and Control >Vibration Reduction Using Near Time-Optimal Commands for Systems With Nonzero Initial Conditions
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Vibration Reduction Using Near Time-Optimal Commands for Systems With Nonzero Initial Conditions

机译:具有非零初始条件的系统的近时间最优命令减振

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摘要

The control of flexible systems has been an active area of research for many years because of its importance to a wide range of applications. The majority of previous research on time-optimal control has concentrated on the rest-to-rest problem. However, there are many cases when flexible systems are not at rest or are subjected to disturbances. This paper presents an approach to design optimal vibration-reducing commands for systems with nonzero initial conditions. The problem is first formulated as an optimal control problem, and the optimal solution is shown to be bang-bang. Once the structure of the optimal command is known, a parametric problem formulation is presented for the computation of the switching times. Solutions are experimentally verified using a portable bridge crane by moving the payload through a commanded motion while removing initial payload swing.
机译:柔性系统的控制由于其对广泛应用的重要性,多年来一直是研究的活跃领域。先前有关时间最优控制的研究大部分集中在休息对休息问题上。但是,在许多情况下,柔性系统不会处于静止状态或受到干扰。本文提出了一种为非零初始条件的系统设计最佳减振命令的方法。首先将该问题表述为最优控制问题,并且最优解被证明是爆炸式的。一旦知道了最佳命令的结构,就可以给出参数问题公式来计算切换时间。使用便携式桥式起重机通过将有效载荷按指令运动移动,同时消除初始有效载荷摆幅来对解决方案进行实验验证。

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