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Active noise control of a mechanically linked double panel system coupled with an acoustic enclosure

机译:机械连接的双面板系统和隔音罩的主动噪声控制

摘要

Active control of sound transmission through a mechanically linked double-wall structure into an acoustic enclosure is investigated in this paper. Based on a fully coupled vibro-acoustic model, the effect of mechanical links on the selection of control strategies is studied by examining (a) cavity control using acoustic sources inside the air gap and (b) structural control using structural actuators between the two panels. The relationship between the transmission path and the control strategies is explored. Numerical results show that cavity control can provide good noise attenuation for soft links when acoustic transmitting path dominates, while either structural or cavity controls can be used with the increase of stiffness of links depending on the frequency range of interest. For each case, the dominant control mechanism is examined and the alteration in the structural-acoustic coupling is analyzed to explain the mechanisms of attenuation. The effect of the acoustic mode (0,0,0) on active control of energy transmission is also discussed, giving guidance to choosing the appropriate control arrangement to ensure the maximum control performance.
机译:本文研究了通过机械连接的双壁结构进入隔音罩的主动声传递控制。基于完全耦合的振动声模型,通过研究(a)使用气隙内声源的空腔控制和(b)使用两块面板之间的结构执行器进行结构控制,研究了机械连接对控制策略选择的影响。 。探索了传输路径与控制策略之间的关系。数值结果表明,当声传输路径占主导地位时,空腔控制可为软链接提供良好的噪声衰减,而结构或空腔控制可根据所关注的频率范围使用,以提高链接的刚度。对于每种情况,都将检查主导控制机制,并分析结构声耦合的变化以解释衰减的机制。还讨论了声学模式(0,0,0)对能量传输的主动控制的影响,为选择合适的控制装置以确保最大的控制性能提供了指导。

著录项

  • 作者

    Li YY; Cheng L;

  • 作者单位
  • 年度 2006
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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