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Active tonal noise control for a computer cooling fan

机译:电脑散热风扇的主动音调噪声控制

摘要

The noise sources on a blade can be divided into a thrust force component along the rotating axis, and a drag component on the fan rotational plane. The radiated noise is a result of acoustic interference among all blades, and the two source components. For a sample fan with B = 7 blades, and S = 7 struts, the drag noise is expected to cancel themselves out. The result is a simple thrust dipole along the fan axis. When B = 7 and S = 4, however, the dominant noise is a rotating drag dipole. This paper demonstrates, experimentally, the global elimination of the blade passing frequency tones from the thrust dipole and the rotating drag dipole for the two sample fans, respectively, by using a simple open-loop, feedforward control scheme. The rig consists of a miniature electret microphone used as a rotation sensor, ordinary loudspeakers, and a bandpass filter with adjustable amplitude and phase delay. The electret microphone is installed flush with the inlet bellmouth of the fan. It picks up the fluctuating aerodynamic pressure caused by the passing rotor blades, and is shown to perform much better than a normal optical tachometer.
机译:叶片上的噪声源可分为沿旋转轴的推力分量和在风扇旋转平面上的阻力分量。辐射噪声是所有叶片以及两个源组件之间发生声干扰的结果。对于具有B = 7个叶片且S = 7个支杆的示例风扇,预计阻力会抵消自身的影响。结果是沿着风扇轴的简单推力偶极子。但是,当B = 7且S = 4时,主要噪声是旋转阻力偶极子。本文通过一个简单的开环,前馈控制方案,通过实验证明了分别从两个采样风扇的推力偶极子和旋转阻力偶极子中分别消除了叶片通过频率音调。该装置包括一个用作旋转传感器的微型驻极体麦克风,普通扬声器和一个幅度和相位延迟可调的带通滤波器。驻极体麦克风的安装应与风扇的进气口平齐。它吸收了经过的转子叶片引起的波动的空气动力压力,并且显示出比普通光学转速计更好的性能。

著录项

  • 作者

    Wang J; Huang L;

  • 作者单位
  • 年度 2005
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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