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Far-field directivity of parametric loudspeaker arrays set on curved surfaces

机译:设置在曲面上的参数扬声器阵列的远场方向性

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Parametric loudspeaker arrays comprise arrangements of piezoelectric ultrasonic transducers that emit highly directive audible sound, thanks to the nonlinear parametric array phenomenon. Most parametric loudspeakers consist of planar arrays of transducers though, lately, devices have been developed which involve their distribution on curved surfaces. In this work, we present an extension of the recently proposed convolution model for planar arrays to predict the far field directivity of curved parametric loudspeakers. An expression is first given to compute the audible secondary pressure field generated by a single ultrasonic transducer placed at any point on a general curved surface, and pointing in its normal direction. Assuming weak non-linearity, the total audible pressure produced by all transducers on the surface is then recovered from the superposition principle. As an application, we predict the far-field pressure generated by an omnidirectional parametric loudspeaker consisting of hundreds of ultrasonic transducers set on a sphere. A critical aspect for the performance of the omnidirectional source is that of finding a proper distribution for them on the spherical surface. Two options are analyzed: getting an optimal solution for a Fekete-like problem, and resorting to an equal-area partitioning scheme, which is more feasible for a practical construction of the source. Numerical simulations are carried out for both alternatives. (C) 2018 Elsevier Inc. All rights reserved.
机译:由于非线性参量阵列现象,参量扬声器阵列包括压电超声换能器的布置,这些压电超声换能器发出高度定向的可听声音。大多数参数扬声器由换能器的平面阵列组成,但是最近已经开发出了将其分布在曲面上的设备。在这项工作中,我们提出了对平面阵列最近提出的卷积模型的扩展,以预测弯曲参量扬声器的远场方向性。首先给出一个表达式,以计算由单个超声换能器产生的可听二次压力场,该换能器放置在大体弯曲表面上的任意点并指向其法线方向。假设非线性较弱,则从叠加原理中恢复所有传感器在表面上产生的总可听压力。作为一种应用,我们预测由安装在球体上的数百个超声换能器组成的全向参量扬声器产生的远场压力。全向光源性能的一个关键方面是在球形表面上为它们找到合适的分布。分析了两种选择:针对类Fekete问题获得最佳解决方案,以及求助于等面积划分方案,这对于源的实际构建更可行。两种替代方案均进行了数值模拟。 (C)2018 Elsevier Inc.保留所有权利。

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