Filtered-x LMS 알고리즘을 응용한 덕트내 평면파 소음의 능동제어Active Noise Control of the Plane Wave Travelling in a Duct Using Filtered-x LMS Algorithm

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An adaptive signal processing technique is implemented for the active noise cancellation of the plane acoustic wave propagating in a duct. To avoid the instability caused by the acoustic feedback from the control speaker to the detect microphone, an off-line modeling of the acoustic feedback plant is done using the FIR filter. Auxiliary path required for the filtered-x LMS algorithm is modeled as well. Before going into the experiments, a simulation is carried out under the same conditions with experiments. The simulation shows that the longer the length of the adaptive filter is, the better the results are achieved. Experiments have been carried out at lower audio frequency range (50 - 400Hz), and the results are in good agreements with those of simulation study. As a results of this adaptive noise control, around 50dB is reduced for a pure tone noise, and for a bandlimited noise with the bandwidth of 316Hz, a maximum of 30dB noise reduction is attained.
Publisher
한국소음진동공학회
Issue Date
1992-01
Language
Korean
Citation

한국소음진동공학회지, v.2, no.3, pp.107 - 116

ISSN
1598-2785
URI
http://hdl.handle.net/10203/66914
Appears in Collection
ME-Journal Papers(저널논문)
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