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Quiet Area Detection in 3D Sound Field Simulation via Delaunay Triangulation

机译:通过Delaunay三角剖分进行3D声场仿真中的安静区域检测

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The improvement of the comfort noise in digital home is a difficult problem since the complexity of the indoor environment. To address this challenge, this paper presents a novel approach to detecting quiet zones in the indoor space to support the research of the indoor sound barrier. As the preliminary visualization analysis of noise isolation, the method is located to the simulation of the simple sound source, according to computing the transmission of the sound, taking boundary reflection and attenuation into consideration to analyze sound field distribution and detecting the impact points. After that Delaunay triangulation is introduced to the acoustic field to form quiet areas from the impact points. The experimental results demonstrate that effective geometric analysis can improve the knowledge of indoor sound field distribution, and we will devote to research the sound sources more complex and realistic in the future.
机译:由于室内环境的复杂性,数字家庭中舒适噪声的改善是一个难题。为了解决这一挑战,本文提出了一种新颖的方法来检测室内空间的安静区域,以支持室内声屏障的研究。作为对噪声隔离的初步可视化分析,该方法定位于简单声源的仿真,通过计算声音的传播,并考虑边界反射和衰减来分析声场分布并检测碰撞点。之后,将Delaunay三角剖分法引入声场,从撞击点形成安静区域。实验结果表明,有效的几何分析可以提高室内声场分布的认识,今后我们将致力于研究更复杂,更现实的声源。

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