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Construction of an Omnidirectional Parametric Loudspeaker Consisting in a Spherical Distribution of Ultrasound Transducers

机译:由超声换能器的球形分布组成的全向参量扬声器的构造

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摘要

Omnidirectional sound sources are needed to perform a large variety of tests in acoustics. Typically, they consist of conventional speaker drivers arranged in a dodecahedron. However, the directivity of the speaker drivers sharpens with frequency, which induces an intense decrease of the sound pressure levels at the edges of the dodechaedron. In this work, the problem is mitigated by building an Omnidirectional Parametric Loudspeaker (OPL), which contains hundreds of small ultrasound transducers set on a sphere. Each transducer emits an ultrasonic carrier wave modulated by an audible signal. Thanks to nonlinear propagation, the air itself demodulates the signal bringing it back to the audible range. The construction of an OPL prototype is challenging. The structure has been built by 3D-printing a set of pieces that conform to the sphere. Each piece contains the exact location of the transducers, which are aligned in parallels to facilitate the structural assembly and the wiring. The performance of the OPL has been tested in an anechoic chamber. Measurements show that the OPL has a good omnidirectional behavior for most frequencies. It clearly improves the directivity of dodechaedral sources in the high frequency range, but performs worse at low frequencies.
机译:需要全向声源来进行各种声学测试。通常,它们由布置在十二面体中的常规扬声器驱动器组成。但是,扬声器驱动器的方向性会随着频率而变尖锐,这会导致十二面体边缘处的声压级大大降低。在这项工作中,通过构建全向参数扬声器(OPL)可以缓解该问题,该扬声器包含一个球形的数百个小型超声换能器。每个换能器发射由可听信号调制的超声波载波。由于非线性传播,空气本身会对信号进行解调,使其返回到可听范围。 OPL原型的构建具有挑战性。该结构是通过3D打印与球形相符的一组零件而构建的。每一块都包含换能器的精确位置,它们平行排列以方便结构组装和接线。 OPL的性能已在消声室内进行了测试。测量表明,OPL在大多数频率下具有良好的全向性能。显然,它可以改善十二面体光源在高频范围内的方向性,但在低频情况下性能较差。

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