声学
噪声控制
声压
声衰减
超材料
亥姆霍兹谐振器
声阻抗
噪音(视频)
反向
衰减
计算机科学
传输损耗
电阻抗
降噪
谐振器
测距
声音传输等级
亥姆霍兹自由能
交通噪声
阻抗匹配
材料科学
传输(电信)
电子工程
物理
频带
次声
工程类
输电线路
插入损耗
匹配(统计)
背景噪声
作者
Jiansen Li,Mingjing Yue,Yijin Hao
标识
DOI:10.1177/10775463261418131
摘要
A novel Acoustic Metamaterial Inverse Design Method (AMIDM) is proposed to achieve targeted noise reduction by linking measured noise spectra with optimized metamaterial unit cells. Utilizing a MATLAB-COMSOL co-simulation framework, an optimized barrier comprising nested Helmholtz resonators was developed to specifically target road traffic noise. Comparative analysis demonstrates that the inverse-designed structure significantly outperforms conventional uniform arrays by expanding the effective bandwidth. Simulation results revealed a broad first bandgap ranging from 400.9 to 970.7 Hz, with effective suppression of acoustic wave propagation. Impedance tube experiments confirmed significant attenuation within the same frequency band, closely matching the simulated Sound Transmission Loss (STL) response. Field tests further validated the practicality of the optimized barrier, achieving maximum sound pressure level reductions of 4.8 dB in the first bandgap and 2.9 dB in the second. These findings demonstrate that the AMIDM framework provides an efficient and generalizable approach for the inverse design of acoustic metamaterials, offering strong potential for future engineering applications in noise control.
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