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Using optimized surface modifications to improve low frequency response in a room

机译:使用优化的表面修饰来改善房间的低频响应

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A case study of improving sound energy distribution at low frequency in a small orthogonal room is presented in this paper. The effects of the geometric modifications of wall surface on the sound frequency response have been investigated in depth. In order to find the optimal modifications for the wall surface, an optimization procedure, based on finite element analysis, has been developed. The uniqueness of this method is that it takes both modal redistribution and sound diffusion into account during optimization process. As a result, the promising improvements of sound frequency response have been obtained at the frequencies around 100 Hz in all rooms tested, particularly in those where the serious modal concentrations are met. The maximum reduction of sound fluctuation in such a room could reach a mount of 4.6 dB. The work opens up the possibility of improving low frequency sound quality by a means that considers both modal changing and surface scattering at same time.
机译:本文以改善小型正交房间中低频声能分布为例。深入研究了壁表面几何修饰对声频响应的影响。为了找到墙面的最佳修改,已开发了基于有限元分析的优化程序。这种方法的独特之处在于在优化过程中要同时考虑模态重新分配和声音扩散。结果,在所有测试的房间中,尤其是在那些满足严重模态浓度的房间中,在100 Hz左右的频率处均获得了有希望的声音频率响应改善。在这样的房间中,最大程度地降低声音波动可以达到4.6 dB。这项工作为通过同时考虑模态变化和表面散射的方法改善低频声音质量提供了可能性。

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