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Sound fields in a rectangular enclosure under active sound transmission control

机译:在主动声音传输控制下的矩形外壳中的声场

摘要

The present study evaluates the effectiveness of active sound transmission control inside an enclosure using a purely acoustic source under the potential energy, squared pressure, and energy density control algorithms. Full coupling between a flexible boundary wall and the interior acoustic cavity is considered. Formulas based on the impedance-mobility approach are developed for the active control of sound transmission with the energy density control algorithm. The resultant total acoustic potential energy attenuation and sound fields under the three control algorithms are compared. Global amplification of the sound level with localized quiet zones under the squared pressure control is observed. This adverse effect can be removed by using the energy density control. It is also shown that the energy density control provides a more uniform control of sound field. Better performance of global and local control of sound field using the squared pressure and energy density controls can be achieved by locating the error sensors at the peak quiet zones and the areas of peak energy density attenuation, respectively, obtained under potential energy control.
机译:本研究评估了在势能,平方压力和能量密度控制算法下,使用纯声源在机壳内部进行主动声音传输控制的有效性。考虑了柔性边界壁与内部声腔之间的完全耦合。开发了基于阻抗迁移率方法的公式,用于利用能量密度控制算法主动控制声音传输。比较了三种控制算法下得到的总声势能衰减和声场。观察到在平方压力控制下具有局部安静区域的声级的整体放大。通过使用能量密度控制可以消除这种不利影响。还显示出能量密度控制提供了对声场的更均匀控制。通过将误差传感器分别放置在潜在能量控制下获得的峰值安静区域和峰值能量密度衰减区域,可以实现使用平方压力和能量密度控制的声场全局和局部控制更好的性能。

著录项

  • 作者

    Lau SK; Tang SK;

  • 作者单位
  • 年度 2001
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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