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首页> 外文期刊>The Journal of the Acoustical Society of America >Active control of sound transmission through a double-leaf partition by volume velocity cancellation
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Active control of sound transmission through a double-leaf partition by volume velocity cancellation

机译:通过音量速度抵消主动控制通过双叶隔板的声音传输

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The paper considers the active control of harmonic sound transmitted through a double-leaf partition by cancelling the volume velocity of the radiating panel. The double-leaf partition consists of a pair of small plates, 300 * 380 mm, separated by a 100-mm air-gap. The panel volume velocity can be sensed by a single shaped film of piezoelectric PVDF material attached to the plate. Cancellation of volume velocity using a single point force is compared with the result using a matched, distributed actuator which applies a uniform force to the plate and does not give rise to control spillover. Comparison with earlier work in which the volume velocity of a single plate was cancelled [Johnson and Elliott, J. Acoust. Soc. Am. 98, 2174-2186 (1995)] shows that substantial reductions in the transmitted sound power are only possible up to around 350 Hz, as opposed to 600 Hz in the single panel case. A radiation mode analysis of the panels shows that the double-leaf construction provides good passive attenuation of the first radiation mode at high frequencies, so that inefficiently radiating even modes of the radiating panel make a dominant contribution to the radiated sound power. Thus there is no advantage in controlling volume velocity in this frequency range.
机译:本文考虑通过消除辐射板的体积速度来主动控制通过双叶隔板传播的谐波。双叶隔板由一对300 * 380毫米的小板组成,由100毫米的气隙隔开。面板体积速度可以通过附着在板上的压电PVDF材料的单个成型膜来检测。将使用单点力消除体积速度与使用匹配的分布式执行器的结果进行比较,该执行器将均匀的力施加到板上,不会引起控制溢出。与早期工作的比较,在早期工作中取消了单个板的体积速度[Johnson和Elliott,J。Acoust。 Soc。上午。 98,2174-2186(1995)]表明,仅在高达350 Hz时才有可能大幅降低发射的声功率,而在单面板情况下只有600 Hz。面板的辐射模式分析表明,双叶结构在高频下对第一辐射模式提供了良好的无源衰减,因此辐射板的均匀辐射模式无效地辐射了辐射声功率。因此,在该频率范围内控制体积速度没有优势。

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