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篇名
Visualization of Rotating Machinery Noise Based on Near Field Acoustic Holography
並列篇名
Visualization of Rotating Machinery Noise Based on Near Field Acoustic Holography
作者 Xiao-Xia Guo (Xiao-Xia Guo)Rui-Qi Zhang (Rui-Qi Zhang)Shu-Hao Liu (Shu-Hao Liu)Chen Wan (Chen Wan)Zhen-Yu Wang (Zhen-Yu Wang)Rong-Rong Han (Rong-Rong Han)
英文摘要

In order to solve the problem of fast identification of the noise source of rotating machinery, the time-space complex envelope model of monopole sound source is studied, and a modulation method of the complex envelope is proposed. A method combining near-field acoustic holography technology and complex envelope information is proposed to reconstruct the sound field and realize the identification of rotating machinery noise sources. Using the overall fluctuation of the signal to identify the noise source of the rotating machinery greatly reduces the amount of calculation, and speeds up the positioning speed while ensuring the positioning accuracy. According to the sound field radiation characteristics of rotating machinery noise, different measurement distances, different sampling points numbers and different reconstruction distances are selected to reconstruct the sound field. The simulation data analysis results show that the near-field acoustic holography technology can still obtain high sound field reconstruction accuracy under the condition of large reconstruction distance, and does not require high sampling points numbers. Using the envelope information extracted by envelope modulation technology to reconstruct the sound field can accurately identify the number and geometric distribution of sound sources. This technology not only speeds up data processing, but also ensures the accuracy of sound field reconstruction.

 

起訖頁 215-223
關鍵詞 near field acoustic holographyrotating machineryspatial envelopeenvelope modulation
刊名 電腦學刊  
期數 202208 (33:4期)
該期刊-上一篇 Improvement and Optimization of a Mobile Multi-agent AODV Routing Protocol
該期刊-下一篇 Research on Drag Reduction Mechanism of Supersonic Ship Tail-shaped Projectile Based on Computer-aided Simulation
 

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