首页> 外文期刊>The Journal of the Acoustical Society of America >Sound field reconstruction using acousto-optic tomography ~a
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Sound field reconstruction using acousto-optic tomography ~a

机译:使用声光层析成像重建声场〜a

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When sound propagates through a medium, it results in pressure fluctuations that change the instantaneous density of the medium. Under such circumstances, the refractive index that characterizes the propagation of light is not constant, but influenced by the acoustic field. This kind of interaction is known as the acousto-optic effect. The formulation of this physical phenomenon into a mathematical problem can be described in terms of the Radon transform, which makes it possible to reconstruct an arbitrary sound field using tomography. The present work derives the fundamental equations governing the acousto-optic effect in air, and demonstrates that it can be measured with a laser Doppler vibrometer in the audible frequency range. The tomographic reconstruction is tested by means of computer simulations and measurements. The main features observed in the simulations are also recognized in the experimental results. The effectiveness of the tomographic reconstruction is further confirmed with representations of the very same sound field measured with a traditional microphone array.
机译:当声音通过介质传播时,会导致压力波动,从而改变介质的瞬时密度。在这种情况下,表征光传播的折射率不是恒定的,而是受到声场的影响。这种相互作用称为声光效应。可以通过Radon变换描述将这种物理现象表达为数学问题的方法,这可以使用断层摄影术重建任意声场。本工作推导了控制空气中声光效应的基本方程,并证明可以用激光多普勒振动计在可听频率范围内对其进行测量。断层图像重建通过计算机模拟和测量进行测试。在仿真中观察到的主要特征也在实验结果中得到认可。通过使用传统麦克风阵列测量的非常相同的声场的表示,进一步证实了层析成像重建的有效性。

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