Active Control on the Acoustic Fields in Duct Using the Combined Acoustic Source

碩士 === 臺灣大學 === 工程科學及海洋工程學研究所 === 98 === There are two techniques in noise control, which are passive and active noise controls. This study is to provide a new approach, of which a conventionally used loudspeaker is combined with a resonator, to active noise control (ANC). Speaking to the...

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Main Authors: Jia-Wei Kang, 康家瑋
Other Authors: K.T. Chen
Format: Others
Language:zh-TW
Published: 2010
Online Access:http://ndltd.ncl.edu.tw/handle/21569737895233463351
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spelling ndltd-TW-098NTU053450132015-10-13T18:49:38Z http://ndltd.ncl.edu.tw/handle/21569737895233463351 Active Control on the Acoustic Fields in Duct Using the Combined Acoustic Source 組合式可控制聲源於管道聲場之消音性能研究 Jia-Wei Kang 康家瑋 碩士 臺灣大學 工程科學及海洋工程學研究所 98 There are two techniques in noise control, which are passive and active noise controls. This study is to provide a new approach, of which a conventionally used loudspeaker is combined with a resonator, to active noise control (ANC). Speaking to the compound sources as used, the acoustic waves produced by the controllable loudspeaker in the resonator can reduce its downstream sound pressure greatly at the resonant frequency of the resonator, which is generated from the primary noise sources. Impressively, the two techniques as used don’t interfere negatively to each other. Regarding to the experiment, it is to use a FIR digital filter as the main structure of the involved, and meanwhile to directly take single- or dual- frequency signal from function generator as the reference input. To achieve the best active control performance, the weighting coefficients of the digital filter are adjusted by using an appropriate LMS algorithm. The results of this study show adding a conventional loudspeaker in a resonator can provide attenuation of downstream pressure level by almost 40 dB below 1000 Hz. Otherwise, use of a single Helmholtz resonator can provide an attenuation of downstream pressure level by about 30 dB at its resonant frequency. K.T. Chen 陳國在 2010 學位論文 ; thesis 85 zh-TW
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description 碩士 === 臺灣大學 === 工程科學及海洋工程學研究所 === 98 === There are two techniques in noise control, which are passive and active noise controls. This study is to provide a new approach, of which a conventionally used loudspeaker is combined with a resonator, to active noise control (ANC). Speaking to the compound sources as used, the acoustic waves produced by the controllable loudspeaker in the resonator can reduce its downstream sound pressure greatly at the resonant frequency of the resonator, which is generated from the primary noise sources. Impressively, the two techniques as used don’t interfere negatively to each other. Regarding to the experiment, it is to use a FIR digital filter as the main structure of the involved, and meanwhile to directly take single- or dual- frequency signal from function generator as the reference input. To achieve the best active control performance, the weighting coefficients of the digital filter are adjusted by using an appropriate LMS algorithm. The results of this study show adding a conventional loudspeaker in a resonator can provide attenuation of downstream pressure level by almost 40 dB below 1000 Hz. Otherwise, use of a single Helmholtz resonator can provide an attenuation of downstream pressure level by about 30 dB at its resonant frequency.
author2 K.T. Chen
author_facet K.T. Chen
Jia-Wei Kang
康家瑋
author Jia-Wei Kang
康家瑋
spellingShingle Jia-Wei Kang
康家瑋
Active Control on the Acoustic Fields in Duct Using the Combined Acoustic Source
author_sort Jia-Wei Kang
title Active Control on the Acoustic Fields in Duct Using the Combined Acoustic Source
title_short Active Control on the Acoustic Fields in Duct Using the Combined Acoustic Source
title_full Active Control on the Acoustic Fields in Duct Using the Combined Acoustic Source
title_fullStr Active Control on the Acoustic Fields in Duct Using the Combined Acoustic Source
title_full_unstemmed Active Control on the Acoustic Fields in Duct Using the Combined Acoustic Source
title_sort active control on the acoustic fields in duct using the combined acoustic source
publishDate 2010
url http://ndltd.ncl.edu.tw/handle/21569737895233463351
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