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Vibration control strategies for proof-mass actuators

机译:校样质量执行器的振动控制策略

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摘要

Proof-mass actuators have been considered for a broad range of structural vibration control problems, from seismic protection for tall buildings to the improvement of metal machining productivity by stabilizing the self-excited vibrations known as chatter. This broad range of potential applications means that a variety of controllers have been proposed, without drawing direct comparisons with other controller designs that have been considered for different applications. This article takes three controllers that are potentially suitable for the machining chatter problem: Direct velocity feedback, tuned-mass-damper control (or vibration absorber control), and active-tuned-mass-damper control (or active vibration absorber control). These control strategies are restated within the more general framework of Virtual Passive Control. Their performance is first compared using root locus techniques, with a model based on experimental data, including the low frequency dynamics of the proof-mass. The frequency response of the test structure is then illustrated under open and closed-loop conditions. The application of the control strategies to avoid machine-tool chatter vibrations is then discussed, without going into detail on the underlying physical mechanisms of chatter. It is concluded that virtual passive absorber control is more straightforward to implement than virtual skyhook damping, and may be better suited to the problem of machining chatter.
机译:从高楼大厦的地震保护到通过稳定称为颤振的自激振动来提高金属加工生产率,已经考虑到质量块促动器用于各种结构振动控制问题。潜在的广泛应用意味着已经提出了各种控制器,而没有与已经针对不同应用考虑的其他控制器设计进行直接比较。本文采用了三个可能适用于加工颤振问题的控制器:直接速度反馈,调谐质量阻尼器控制(或减振器控制)和有源调谐质量阻尼器控制(或有源减振器控制)。这些控制策略在虚拟被动控制的更通用框架内进行了重述。首先使用根轨迹技术,将它们的性能与基于实验数据的模型进行比较,包括实验质量的低频动态。然后说明了在开环和闭环条件下测试结构的频率响应。然后讨论了避免机床颤振的控制策略的应用,而没有详细介绍颤振的潜在物理机制。结论是,虚拟被动吸收器控制比虚拟天钩阻尼更易于实现,并且可能更适合于加工颤振问题。

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  • 作者

    Huyanan S.; Sims N.D.;

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  • 年度 2007
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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