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Integral Approach for Reproduction of Virtual Sound Source Surrounded by Loudspeaker Array

机译:扬声器阵列环绕的虚拟声源再现的整体方法

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A method for reproducing a desired sound field by using an array of loudspeakers is proposed. A virtual sound source that generates the desired sound field can be located at either the outside or inside a loudspeaker array; however, a complete reproduction of the virtual source located inside the array is physically not possible because the sound field from the internal virtual source should satisfy the inhomogeneous wave equation. When time reversal is used for removing such inhomogeneity, convergent waves toward the location of the virtual source always exist. The removal of these artifacts is an objective of our study. Most of the theoretical forms for the suppression of artifacts have been derived from the approximated Kirchhoff-Helmholtz integral incorporating a curved or line array. In this paper, we aim to develop a method based on a complete three-dimensional integral formula, which does not require an inversion of sound fields. Using the formula, we can directly predict the behavior of artifacts and design the excitation of the loudspeakers that effectively suppresses the artifacts. This paper also highlights a single-layer formula that only incorporates monopole arrays for the reproduction of the virtual source inside them.
机译:提出了一种通过使用扬声器阵列来再现期望声场的方法。产生所需声场的虚拟声源可以位于扬声器阵列的外部或内部。但是,由于内部虚拟声源的声场应满足非均匀波动方程,因此物理上不可能完全复制位于阵列内部的虚拟声源。当使用时间反转来消除这种不均匀性时,总是存在朝向虚拟源位置的会聚波。这些文物的去除是我们研究的目标。抑制伪影的大多数理论形式都是从包含曲面或线阵的近似Kirchhoff-Helmholtz积分中得出的。本文旨在开发一种基于完整三维积分公式的方法,该方法不需要声场反演。使用该公式,我们可以直接预测伪像的行为,并设计有效抑制伪像的扬声器的激励。本文还重点介绍了仅包含单极阵列的单层公式,用于在其中复制虚拟源。

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