变噪声环境下的自动自适应通风超材料吸收器

Hongxing Tian, Xiao Xiang, K. He, Chuan-Li Liu, Suxia Hou, Shuxia Wang, Yingzhou Huang, Xiaoxiao Wu, Weijia Wen
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引用次数: 4

摘要

设计了一种自动自适应的超材料吸声器,通过设计一个反馈电路来主动检测噪声信号并调节可重构吸声器上的滑块,可以在通风条件下吸收可调谐的低频(<500 Hz)声音。自动自适应通风吸收器提供了一条智能路线,通过直接根据外部环境调整吸声单元,同时保持高效的吸收和通风,以适应不同的低频。对智能吸声器进行了实验验证,并采用耦合损耗振子的有效模型来理解其机理。在未来,制造的吸收器可以调整,以适应不同的工作频率,在惊人的应用,如通风智能窗,这不仅有效地解决了外界噪音的影响,还提供了一个清新明亮的工作环境。自动自适应吸收器也应该在管道中找到有前途的应用,其中噪音的频率可以随时间变化,并且在这种情况下手动调整吸收器通常是困难和不准确的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Automatically Adaptive Ventilated Metamaterial Absorber for Environment with Varying Noises
An automatically adaptive metamaterial sound absorber is designed, which can absorb tunable low‐frequency (<500 Hz) sounds under ventilated conditions by designing a feedback circuit to actively detect the noise signals and adjust the sliders on the reconfigurable absorbers. The automatically adaptive ventilated absorber provides an intelligent route to adapt for different low frequencies, through adjusting the sound absorption units directly in accordance with the external environment while retaining high‐efficiency absorption and ventilation. The intelligent sound absorber is demonstrated experimentally and the effective model of coupled lossy oscillators is employed to understand its mechanism. In the future, the absorber that is fabricated can be adjusted to adapt for different working frequencies in stunning applications such as ventilated smart windows, which not only effectively solves the influence of external noise but also provides a fresh and bright working environment. The automatically adaptive absorber should also find promising applications in ducts, where the frequencies of noises can vary time by time, and it is often difficult and inaccurate to manually tune an absorber in such scenarios.
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