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首页> 外文期刊>The Journal of the Acoustical Society of America >Separation of non-stationary sound fields with single layer pressure-velocity measurements
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Separation of non-stationary sound fields with single layer pressure-velocity measurements

机译:单层压力-速度测量分离非平稳声场

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摘要

This paper examines the feasibility of extracting the non-stationary sound field generated by a target source in the presence of disturbing source from single layer pressure-velocity measurements. Unlike the method described in a previous paper [Bi, Geng, and Zhang, J. Acoust. Soc. Am. 135(6), 3474-3482 (2014)], the proposed method allows measurements of pressure and particle velocity signals on a single plane instead of pressure signals on two planes, and the time-dependent pressure generated by the target source is extracted by a simple superposition of the measured pressure and the convolution between the measured particle velocity and the corresponding impulse response function. Because the particle velocity here is measured directly, the error caused by the finite difference approximation can be avoided, which makes it possible to perform the separation better than the previous method. In this paper, a Microflown pressure-velocity probe is used to perform the experimental measurements, and the calibration procedure of the probe in the time domain is given. The experimental results demonstrate that the proposed method is effective in extracting the desired non-stationary sound field generated by the target source from the mixed one in both time and space domains, and it obtains more accurate results than the previous method. (c) 2016 Acoustical Society of America.
机译:本文探讨了从单层压力-速度测量中提取存在干扰源的目标源产生的非平稳声场的可行性。不同于先前论文中描述的方法[Bi,Geng,and Zhang,J. Acoust。 Soc。上午。 135(6),3474-3482(2014)],提出的方法允许在单个平面上测量压力和粒子速度信号,而不是在两个平面上测量压力信号,并提取目标源产生的随时间变化的压力测量压力的简单叠加以及测量颗粒速度与相应脉冲响应函数之间的卷积。由于此处的粒子速度是直接测量的,因此可以避免由有限差分近似法引起的误差,这使分离效果比以前的方法更好。本文采用Microflown压力-速度探头进行实验测量,并给出了在时域内的探头校准程序。实验结果表明,该方法在时域和空域均能有效地从混合声源中提取目标声源产生的期望非平稳声场,并取得了较准确的结果。 (c)2016年美国声学学会。

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