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Acousto-optic back -projection: Physical -model -based sound field reconstruction from optical projections

机译:声光返回 - 投影:来自光学投影的物理模型 - 基于声场重建

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摘要

As an alternative to microphones, optical techniques have been studied for measuring a sound field. They enable contactless and non-invasive acoustical observation by detecting density variation of medium caused by sound. Although they have important advantages comparing to microphones, they also have some disadvantages. Since sound affects light at every points on the optical path, the optical methods observe an acoustical quantity as spatial integration. Therefore, point -wise information of a sound field cannot be obtained directly. Ordinarily, the computed tomography (CT) method has been applied for reconstructing a sound field from optically measured data. However, the observation process of the optical methods have not been considered explicitly, which limits the accuracy of the reconstruction. In this paper, a physical -model -based sound field reconstruction method is proposed. It explicitly formulates the physical observation process so that a model mismatch of the conventional methods is eliminated. (C) 2017 Elsevier Ltd. All rights reserved.
机译:作为麦克风的替代方案,已经研究了光学技术来测量声场。通过检测由声音引起的培养基的密度变化,它们能够使接触和非侵入声学观察。虽然它们与麦克风相比具有重要的优势,但它们也有一些缺点。由于声音影响光路上的每个点处的光,所以光学方法观察到空间集成的声量。因此,无法直接获得声场的点对继信息。通常,已经应用了计算的断层扫描(CT)方法来从光学测量数据重建声场。然而,光学方法的观察过程尚未明确地考虑,这限制了重建的准确性。本文提出了一种基于物理形式的声场重建方法。它明确地制定了物理观察过程,以便消除了传统方法的模型不匹配。 (c)2017 Elsevier Ltd.保留所有权利。

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