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A non-parametric fluid-equivalent approach for the acoustic characterization of rigid porous materials

机译:非参数等效流体方法,用于表征刚性多孔材料的声学特性

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The acoustic characterization of porous materials with rigid solid frame plays a key role in the prediction of the acoustic behavior of any dynamic system that incorporates them. In order to obtain an accurate prediction of its frequency-dependent response, a suitable choice of the parametric models for each material is essential. However, such models could be inadequate for a given material or only valid in a specific frequency range. In this work, a novel non-parametric methodology is proposed for the characterization of the acoustic properties of rigid porous materials. Unlike most widespread methodologies, this technique is based on the solution of a sequence of frequency-by-frequency well-posed inverse problems, thus increasing the characterization accuracy. Once a reduced number of experimental measurements is available, the proposed method avoids the a priori choice of a parametric model. (C) 2019 Elsevier Inc. All rights reserved.
机译:具有刚性固体框架的多孔材料的声学特性在预测包含这些材料的任何动态系统的声学行为时都起着关键作用。为了获得对其频率相关响应的准确预测,必须为每种材料选择合适的参数模型。但是,这样的模型对于给定的材料可能不足,或者仅在特定的频率范围内有效。在这项工作中,提出了一种新颖的非参数方法,用于表征刚性多孔材料的声学特性。与大多数广泛使用的方法不同,该技术基于一系列逐个频率的正定逆问题的解决方案,从而提高了表征精度。一旦减少了数量的实验测量,所提出的方法就避免了参数模型的先验选择。 (C)2019 Elsevier Inc.保留所有权利。

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