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A feasibility study on active sound reduction across an acoustic plenum window by cancelling source clusters on internal periphery of the window cavity

Chan, P. Y.; Tang, S. K.; Cheung, Chi Chung; Mui, K. W.; Fu, S. C.

Authors

P. Y. Chan

Chi Chung Cheung

K. W. Mui

S. C. Fu



Abstract

The possibility of applying active control to reduce sound transmission across a practical plenum window is examined experimentally in the present study using measured transfer functions of all related sound transmission paths. As a result of the limited space within the window, the error microphones are located at the indoor window opening while the secondary cancelling sources are mounted along the periphery of the window void. Results show that the cancelling sources near the outdoor window opening corners and within the overlapping region of the window play more useful roles in the control. Also, the highest sound reduction is around 6 dB with six error microphones positioned either at the central region or along the periphery of the indoor window opening. However, the results with the central error microphones suggest the possibility of adopting a dual control system to enhance the low frequency performance. Control systems with fewer error microphones result in lower sound reduction. Besides, it is found that four cancelling sources, located around the outdoor opening of the window, will be enough to achieve meaningful active sound transmission reduction between 100 and 1000 Hz. Involving more cancelling sources does not result in better performance despite the added complexity.

Citation

Chan, P. Y., Tang, S. K., Cheung, C. C., Mui, K. W., & Fu, S. C. (2024). A feasibility study on active sound reduction across an acoustic plenum window by cancelling source clusters on internal periphery of the window cavity. The Journal of the Acoustical Society of America, 156(4), 2155-2168. https://doi.org/10.1121/10.0030407

Journal Article Type Article
Acceptance Date Sep 16, 2024
Online Publication Date Oct 4, 2024
Publication Date Oct 1, 2024
Deposit Date Oct 13, 2024
Journal The Journal of the Acoustical Society of America
Print ISSN 0001-4966
Publisher Acoustical Society of America
Peer Reviewed Peer Reviewed
Volume 156
Issue 4
Pages 2155-2168
DOI https://doi.org/10.1121/10.0030407
Public URL https://hull-repository.worktribe.com/output/4865157