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基于等效源法和压力-速度传感器的近场声全息技术。

Near field acoustic holography based on the equivalent source method and pressure-velocity transducers.

作者信息

Zhang Yong-Bin, Jacobsen Finn, Bi Chuan-Xing, Chen Xin-Zhao

机构信息

Institute of Sound and Vibration Research, Hefei University of Technology, Hefei, China.

出版信息

J Acoust Soc Am. 2009 Sep;126(3):1257-63. doi: 10.1121/1.3179665.

Abstract

The advantage of using the normal component of the particle velocity rather than the sound pressure in the hologram plane as the input of conventional spatial Fourier transform based near field acoustic holography (NAH) and also as the input of the statistically optimized variant of NAH has recently been demonstrated. This paper examines whether there might be a similar advantage in using the particle velocity as the input of NAH based on the equivalent source method (ESM). Error sensitivity considerations indicate that ESM-based NAH is less sensitive to measurement errors when it is based on particle velocity input data than when it is based on measurements of sound pressure data, and this is confirmed by a simulation study and by experimental results. A method that combines pressure- and particle velocity-based reconstructions in order to distinguish between contributions to the sound field generated by sources on the two sides of the hologram plane is also examined.

摘要

最近已证明,在传统的基于空间傅里叶变换的近场声全息术(NAH)以及NAH的统计优化变体中,使用粒子速度的法向分量而非全息图平面中的声压作为输入具有优势。本文研究了在基于等效源法(ESM)的NAH中使用粒子速度作为输入是否可能具有类似优势。误差敏感性考虑表明,基于粒子速度输入数据的基于ESM的NAH比基于声压数据测量的情况对测量误差更不敏感,这一点通过模拟研究和实验结果得到了证实。还研究了一种结合基于压力和粒子速度的重建方法,以区分全息图平面两侧源对声场产生的贡献。

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