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Analysis of Multiactuator Panels in the Space-Time Wavenumber Domain

机译:时空波数域中的多执行器面板分析

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摘要

A methodology for the analysis of the radiation characteristics and spatial performance of loudspeaker arrays for wave field synthesis (WFS) reproduction is presented. It is based on the wavenumber domain analysis, where the source radiation is decomposed into plane waves for arbitrary angles of incidence. The method deals with the measurement and analysis of the radiation performance, evaluation of the spatial aliasing frequency, and associated sampling artifacts for linear loudspeaker arrays. A detailed description of the parameters that modify spatial aliasing artifacts, such as array directivity and truncation effects by geometry, is also given. The method is validated at the laboratory with two multiactuator panel arrangements and a dynamic loudspeaker array, all presenting the same transducer spacing. Simulations and experimental results are discussed through several case studies, comparing dynamic loudspeaker arrays and multiactuator panels in WFS operation. Moreover, a study of the consequences for the wavefield when splitting the panels to accommodate a lower number of exciters is also addressed.
机译:提出了一种用于波场合成(WFS)再现的扬声器阵列辐射特性和空间性能分析的方法。它基于波数域分析,其中源辐射被分解为任意入射角的平面波。该方法处理辐射性能的测量和分析,空间混叠频率的评估以及线性扬声器阵列的相关采样伪像。还详细说明了修改空间混叠伪像的参数,例如阵列方向性和几何形状的截断效果。该方法已在实验室通过两个多执行器面板布置和一个动态扬声器阵列进行了验证,它们都具有相同的换能器间距。通过几个案例研究讨论了仿真和实验结果,比较了WFS操作中的动态扬声器阵列和多执行器面板。此外,还讨论了在将面板分开以容纳较少数量的激励器时对波场的后果的研究。

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