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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science >Dual surface beamforming and acoustical holography for sound field visualization in reverberant environments
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Dual surface beamforming and acoustical holography for sound field visualization in reverberant environments

机译:双表面波束成形和声学全息技术,可在混响环境中可视化声场

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摘要

Near-field acoustical holography is a technique that has been widely used to visualize noise sources from pressure measurements in spaces that can be assumed to be anechoic or semi-anechoic. Previously, a dual surface acoustical holography procedure based on making measurements on two surfaces between the source and a reflecting surface was introduced to remove the effects of reverberation. Little work has been performed in which beamforming has been used to visualize sources based on dual surface, near-field measurements in a reverberant environment: such a procedure is described here. Because many practical measurement environments are not completely anechoic, the source resolution accuracy of dual surface acoustical holography and beamforming procedures in reverberant environments is compared here by using numerical simulations. It has been found that dual surface acoustical holography provides the clearest representation of the source location when sound waves radiating from the source and the reflected waves are propagating in the opposite directions and when the measurement surfaces are conformal with the source geometry. However, it has also been found that dual surface beamforming provides more consistent source resolution performance regardless of the relative direction of wave propagation of the source and reflected waves.
机译:近场声全息术是一种已广泛用于可视化来自假定为消声或半消声的空间中压力测量的噪声源的技术。以前,引入了基于在声源和反射表面之间的两个表面上进行测量的双表面声全息术程序,以消除混响的影响。在混响环境中,基于双表面,近场测量,使用波束赋形来可视化源的工作很少,在这里进行了描述。由于许多实际的测量环境并未完全消声,因此在这里通过数值模拟比较了双表面声学全息术和混响环境中波束形成过程的信号源分辨率精度。已经发现,当从源辐射的声波和反射波沿相反的方向传播时,并且当测量表面与源几何形状相符时,双表面声全息术可以最清楚地表示源位置。然而,也已经发现,不管源波和反射波的波传播的相对方向如何,双表面波束形成都提供更一致的源分辨率性能。

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