The design of an active noise control system involves several steps. One of the most important is to find the best locations of the control sources and error sensors according to the primary source distribution and its spectrum. Thus the first step in this optimization problem is to obtain an analyt
Active noise control of enclosed harmonic fields by using BEM-based optimization techniques
β Scribed by Mingsian R. Bai; Sernshen Chang
- Publisher
- Elsevier Science
- Year
- 1996
- Tongue
- English
- Weight
- 1022 KB
- Volume
- 48
- Category
- Article
- ISSN
- 0003-682X
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β¦ Synopsis
Boundary element methodr (BEM) in conjunction with optimization algorithms are employed for active noise control of sound fields in three-dimensional enclosures. Total time-averaged acoustic potential energy is chosen as the cost function for the optimization procedure. The BEM is used to model the monochromatic sound field generated by noise sources in the enclosure. The constrained steepest descent method proves to be eflective when both positions and amplitudes of the secondary sources are to be optimized, while the direct matrix inversion, the steepest descent method, and the conjugate gradient method prove to be useful when only the amplitudes of secondary sources are to be optimized. The developed BE&&based optimization techniques are applied to control the noise in a rectangular enclosure and a vehicle cabin.
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