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Random vibro-acoustic control of internal noise through optimized Tuned Mass Dampers

机译:通过优化的调谐质量阻尼器对内部噪声进行随机振动声学控制

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摘要

The present work deals with the passive control of interior sound pressure induced by randomly vibrating structure coupled to an enclosure filled with air. The control in the low frequency range is achieved using a Tuned Mass Damper (TMD) device. In order to guarantee an optimal performance of the TMD device, a stochastic acoustic optimization strategy is proposed. In the later, the objective function is the root mean square acoustic pressure measured at a given location inside the cavity. Assuming linear behavior of the vibro-acoustic system, the modal interaction approach is used and the objective function is evaluated by means of spectral analysis. The effectiveness of the proposed strategy is investigated and compared with others from the open literature.The capability of the proposed optimization strategy to deal with multimodal control of interior sound has also been addressed. To this end, multiple TMDs have been used. The optimal TMD parameters have been obtained using a multi-objective optimization approach and the results that have been gathered show significant attenuations in all target resonant modes. (C) 2019 Elsevier Ltd. All rights reserved.
机译:目前的工作涉及对由随机振动的结构耦合到充满空气的外壳所引起的内部声压的被动控制。使用调谐质量阻尼器(TMD)设备可实现低频范围的控制。为了保证TMD设备的最佳性能,提出了一种随机声学优化策略。在后面,目标函数是在腔体内给定位置测得的均方根声压。假设振动声系统的线性行为,则使用模态相互作用方法,并通过频谱分析评估目标函数。研究了所提策略的有效性,并与公开文献中的其他方法进行了比较。还讨论了所提优化策略处理室内声音多模式控制的能力。为此,已经使用了多个TMD。使用多目标优化方法已经获得了最佳的TMD参数,并且已收集的结果表明在所有目标谐振模式下都有明显的衰减。 (C)2019 Elsevier Ltd.保留所有权利。

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