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首页> 外文期刊>Journal of Sound and Vibration >STRATEGIES FOR THE ACTIVE CONTROL OF FLEXURAL VIBRATION ON A BEAM
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STRATEGIES FOR THE ACTIVE CONTROL OF FLEXURAL VIBRATION ON A BEAM

机译:主动控制梁上弯曲振动的策略

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摘要

The active control of flexural waves on a slender beam is discussed for a secondary source array which comprises either point forces or pairs of moments generated by piezoelectric actuators. A model of the secondary source array is first developed and coupled into the beam dynamics by using the wave approach. The behaviour of the beam when three active control strategies are applied is then investigated. One of these is a wave suppression strategy and the other two are based on consideration of power: specifically that of maximizing the power absorbed by a secondary force array, and that of minimizing the total power supplied to the beam by the primary and secondary forces. The control strategies are first applied to an infinite beam to gain insight into the physics of the beam's behaviour, and then to a finite beam. All three control strategies are fully examined and compared. Up to two secondary forces are applied in each case and a physical explanation of the beam's behaviour is given wherever possible. It is shown that the effects of the control strategy of maximizing the power absorbed by the secondary forces are very different when implemented on infinite and finite beams. What appears to be an encouraging control strategy on an infinite beam has a detrimental affect on the overall response of a finite beam. The best overall control strategy for global control on a finite beam is shown to be that of minimizing the total power supplied to the beam. (C) 1995 Academic Press Limited [References: 32]
机译:对于次级源阵列,讨论了细长梁上弯曲波的主动控制,该次级源阵列包含点力或压电致动器产生的成对力矩。首先开发辅助光源阵列的模型,并使用波方法将其耦合到光束动力学中。然后研究了在应用三种主动控制策略时光束的行为。其中一种是波抑制策略,另外两种是基于功率的考虑:特别是最大化次要力阵吸收的功率的策略,以及最小化主要和次要力提供给梁的总功率的策略。首先将控制策略应用于无限光束,以深入了解光束行为的物理原理,然后将其应用于有限光束。全面检查并比较了所有三种控制策略。在每种情况下,最多施加两个次级力,并在可能的情况下给出梁行为的物理解释。结果表明,在无限和有限梁上实施时,使次级力吸收的功率最大化的控制策略所产生的效果是非常不同的。在无限光束上似乎是一种令人鼓舞的控制策略,对有限光束的整体响应产生不利影响。对有限光束进行全局控制的最佳总体控制策略显示为最小化提供给该光束的总功率。 (C)1995 Academic Press Limited [参考文献:32]

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