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Patch near field acoustic holography based on particle velocity measurements

机译:基于粒子速度测量的近场声全息贴片

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摘要

Patch near field acoustic holography (PNAH) based on sound pressure measurements makes it possible to reconstruct the source field near a source by measuring the sound pressure at positions on a surface. that is comparable in size to the source region of concern. Particle velocity is an alternative input quantity for NAH, and the advantage of using the normal component of the particle velocity rather than the sound pressure as the input of conventional spatial Fourier transform based NAH and as the input of the statistically optimized variant of NAH has recently been demonstrated. This paper examines the use of particle velocity as the input of PNAH. Because the particle velocity decays faster toward the edges of the measurement aperture than the pressure does and because the wave number ratio that enters into the inverse propagator from pressure to velocity amplifies high spatial frequencies, PNAH based on particle velocity measurements can give better results than the pressure-based PNAH with a reduced number of iterations. A simulation study, as well as an experiment carried out with a pressure-velocity sound intensity probe, demonstrates these findings.
机译:基于声压测量的斑块近场声全息术(PNAH)使得可以通过测量表面位置的声压来重建声源附近的声场。大小可与关注的源区​​域相媲美。粒子速度是NAH的替代输入量,并且使用粒子速度的法向分量而不是声压作为基于空间傅立叶变换的常规NAH的输入以及作为统计优化的NAH变体的输入的优势被证明。本文研究了使用粒子速度作为PNAH的输入。由于粒子速度朝着测量孔径边缘的衰减比压力快,并且由于从压力到速度进入反向传播器的波数比会放大高空间频率,因此基于粒子速度测量的PNAH可以提供比结果更好的结果。基于压力的PNAH,迭代次数减少。仿真研究以及使用压力-速度声强探头进行的实验证明了这些发现。

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