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Reduction of radiated exterior noise from the flexible vibrating plate of a rectangular enclosure using multi-channel active control

机译:使用多通道主动控制减少矩形外壳的柔性振动板发出的外部辐射噪声

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摘要

This study attempted to control the radiated exterior noise from a rectangular enclosure in which an internal plate vibrates by acoustic excitation and noise is thus radiated from that plate. Multi-channel active control was applied to reduce the vibration and external radiation of this enclosed plate. A piezoelectric ceramic was used as a distributed actuator for multiple mode control of the vibration and radiated noise in the acoustically excited plate. To maximize the effective control, an approach was proposed for attachment the piezoelectric actuator in the optimal location. The plate and internal acoustic space in the enclosure are coupled with each other. This will change dominant frequency characteristics of the plate and, thus, those of the externally radiated noise. Active noise control was accomplished using an accelerometer attached to the plate and a microphone placed adjacent to that plate as an error sensor under acoustic excitation of sine wave and white noise. It was found that the control of radiated external radiation noise requires a microphone as an error sensor, a sound pressure sensor due to vibration of the plate, differences in the dominant frequency of externally radiated noise, and complex vibration modes of the plate. (C) 2015 Elsevier Ltd. All rights reserved.
机译:这项研究试图控制矩形外壳发出的外部噪声,在矩形外壳中,内部板通过声激发而振动,从而从该板辐射出噪声。应用多通道主动控制以减少此封闭板的振动和外部辐射。压电陶瓷用作分布式致动器,用于对声激发板中的振动和辐射噪声进行多模式控制。为了最大化有效控制,提出了一种将压电致动器安装在最佳位置的方法。外壳中的板和内部声学空间彼此耦合。这将改变板的主要频率特性,从而改变外部辐射噪声的主要频​​率特性。在正弦波和白噪声的声激励下,使用附着在板上的加速度计和与该板相邻放置的麦克风作为误差传感器,可以实现主动噪声控制。已经发现,控制辐射的外部辐射噪声需要麦克风作为误差传感器,由于板的振动,外部辐射噪声的主要频​​率差异以及板的复杂振动模式而需要声压传感器。 (C)2015 Elsevier Ltd.保留所有权利。

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