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An efficient approach to computing third- order scattering of sound by sound with application to parametric arrays

机译:一种有效的方法来计算声音的三阶散射,并将其应用于参数阵列

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摘要

A mathematical description of third-order scattered sound fields is derived using a multi-Gaussian beam (MGB) model that describes the sound field of any arbitrary axially symmetric beam as a series of Gaussian base functions. The third-order intermodulation (IM3) frequency components are produced by considering the cascaded nonlinear secondorder effects when analyzing the interaction between the firstand second-order frequency components during the nonlinear scattering of sound by sound from two noncollinear ultrasonic baffled piston sources. The theory is extended to the modeling of the sound beams generated by parametric transducer arrays, showing that the MGB model can be efficiently used to calculate both the second- and third-order sound fields of the array. Measurements are presented for the IM3 frequency components and parametric array sound fields and comparisons of the model are made with traditional simulation results from direct numerical integration.
机译:使用多高斯束(MGB)模型导出了三阶散射声场的数学描述,该模型将任意任意轴对称束的声场描述为一系列高斯基函数。三阶互调(IM3)频率分量是在分析来自两个非共线超声挡板活塞声源的声音对声音进行非线性散射时,通过考虑第一阶和第二阶频率分量之间的相互作用时,考虑级联的非线性第二阶效应而产生的。该理论扩展到参数化换能器阵列产生的声束的建模,表明MGB模型可以有效地用于计算阵列的二阶和三阶声场。给出了对IM3频率分量和参数阵列声场的测量,并与直接数值积分的传统仿真结果进行了模型比较。

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