Comparisons of regularization methods and regularization parameter selection methods in sound source identification using inverse boundary element method
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Published:2019-05-01
Issue:3
Volume:67
Page:219-227
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ISSN:0736-2501
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Container-title:Noise Control Engineering Journal
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language:en
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Short-container-title:noise cont engng j
Author:
Xiao Youhong1,
Song Qingqing1,
Li Shaowei1,
Lv Guoxue1,
Ji Zhenlin1
Affiliation:
1. College of Power and Energy Engineering, Harbin Engineering University
Abstract
In noise source identification based on the inverse boundary element method (IBEM), the boundary vibration velocity is predicted based on the field pressure through a transfer matrix of the vibration velocity and field pressure established on the Helmholtz integral equation. Because
the matrix is often ill-posed, it needs to be regularized before reconstructing the vibration velocity. Two regularization methods and two methods of selecting the regularization parameter are investigated through the simulation analysis of a pulsating sphere. The result of transfer matrix
regularization is further verified through the reconstruction of the vibration of an aluminum plate. Additionally, to reduce the large errors at some frequencies in the reconstruction result, increasing the number of measuring points is more effective than reducing the distance between the
measurement plane and the sound source.
Publisher
Institute of Noise Control Engineering (INCE)
Subject
Industrial and Manufacturing Engineering,Public Health, Environmental and Occupational Health,Mechanical Engineering,Acoustics and Ultrasonics,Aerospace Engineering,Automotive Engineering,Building and Construction
Cited by
1 articles.
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