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ADEAS: a distributed environment for acoustic simulation

机译:Adeas:用于声学模拟的分布式环境

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Acoustic properties of environments are difficult to model, due to their dependence not only on geometry, but also an the internal properties of materials (density, etc.). An acoustically accurate model that can be quantitatively validated is extremely useful for the evaluation of improved enclosures, silencers, acoustically absorbent materials, and human factors studies. We present a new parallel algorithm that generates full 3D simulations of speech intelligibility and sound pressure levels which include sound diffraction, sophisticated external noise and surface absorption models. The simulation environment interface is decoupled from the algorithm using a C++ framework running under X11R5 and Motif. The sequential version of this algorithm produced sound pressure levels that agreed with measured values on the STS-40 Space Shuttle mission to within 4%. We also present the results of some experimental studies performed using ParaSoft Express on the 56-node Intel Paragon at the University of South Carolina.
机译:由于它们不仅在几何形状上,因此难以模拟环境的声学特性,而且依赖于几何形状,而且是材料(密度等)的内部性质。可以定量验证的声学准确的模型对于评估改进的外壳,消声器,声学吸收材料和人类因素研究非常有用。我们提出了一种新的并行算法,可以为语音清晰度和声压水平产生完整的3D模拟,包括声音衍射,复杂的外部噪声和表面吸收模型。使用在X11R5和图案下运行的C ++框架,模拟环境接口与算法分离。该算法的连续版本产生了声压水平,同意STS-40航天飞机使命的测量值到4%以内。我们还展示了一些实验研究的结果,在南卡罗来纳大学的56号Node Intel Paragon上使用Parasoft Express进行了一些实验研究。

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