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Ventilation duct with concurrent acoustic feed-forward and decentralised structural feedback active control

机译:通风管道同时进行声学前馈和分散式结构反馈主动控制

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This paper presents theoretical and experimental work on concurrent active noise and vibration control for a ventilation duct. The active noise control system is used to reduce the air-borne noise radiated via the duct outlet whereas the active vibration control system is used to both reduce the structure-borne noise radiated by the duct wall and to minimise the structural feed-through effect that reduces the effectiveness of the active noise control system. An elemental model based on structural mobility functions and acoustic impedance functions has been developed to investigate the principal effects and limitations of feed-forward active noise control and decentralised velocity feedback vibration control. The principal simulation results have been contrasted and validated with measurements taken on a laboratory duct setup, equipped with an active noise control system and a decentralised vibration control system. Both simulations and experimental results show that the air-borne noise radiated from the duct outlet can be significantly attenuated using the feed-forward active noise control. In the presence of structure-borne noise the performance of the active noise control system is impaired by a structure-borne feed-through effect. Also the sound radiation from the duct wall is increased. In this case, if the active noise control is combined with a concurrent active vibration control system, the sound radiation by the duct outlet is further reduced and the sound radiation from the duct wall at low frequencies reduces noticeably.
机译:本文介绍了同时进行的通风管道主动噪声和振动控制的理论和实验工作。主动噪声控制系统用于减少通过管道出口辐射的空气传播的噪声,而主动振动控制系统既用于减少由管道壁辐射的结构传播的噪声,又使结构馈通效应最小化降低了有源噪声控制系统的效率。为了研究前馈主动噪声控制和分散速度反馈振动控制的主要作用和局限性,建立了基于结构迁移率函数和声阻抗函数的基本模型。主要仿真结果已通过在实验室风管装置上进行的测量进行了对比和验证,该装置配备了主动噪声控制系统和分散式振动控制系统。仿真和实验结果均表明,使用前馈主动噪声控制,可以显着衰减从管道出口辐射的空气传播的噪声。在存在结构噪声的情况下,有源噪声控制系统的性能会因结构馈通效应而受到损害。来自管道壁的声音辐射也增加了。在这种情况下,如果将主动噪声控制与同时进行的主动振动控制系统结合使用,则可以进一步减少导管出口的声音辐射,并且低频显着减少来自导管壁的声音辐射。

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