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Calculation of baffle effect and mutual interaction between elements for an underwater acoustic conformal array with application to the optimization of projecting beampattern

机译:水声共形阵列的挡板效应及单元间相互作用的计算及其在投影波束方向图优化中的应用

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摘要

The boundary element theory together with the optimization method is used to calculate the driving voltage weighting vector of a conformal array of underwater acoustic projecting transducers to obtain a low-sidelobe beampattern. At first, the relationship between the acoustic radiated field and the vibration velocity of the array is formulated from the boundary element equation when the boundary impedance of the array baffle is specified. Then, the mutual impedance matrix of the array is calculated, and the relationship between the driving voltage and the vibration velocity of the transducers is presented based on the equivalent circuit principle. At last, the driving voltage weighting vector of the array is calculated through an optimization method to obtain a low-sidelobe projecting beampattern. Computer simulation is conducted for a 14-element conformal array. An experiment has been carried out to measure the radiation directivity of the array in an anechoic water tank. The calculated and the experimental results show that the proposed method accounts for the acoustic effect of the baffle and the mutual interactions among transducers successfully and obtain a low-sidelobe projecting beam-pattern, and at the same time provide the largest amplitude of pressure in the axial direction when the maximum amplitude of the driving voltage weighting vectors keeps unchanged.
机译:边界元理论和优化方法一起用于计算水声投射换能器的共形阵列的驱动电压加权矢量,以获得低旁瓣波束图。首先,当指定阵列挡板的边界阻抗时,由边界元素方程式来计算声辐射场与阵列的振动速度之间的关系。然后,计算出阵列的互阻抗矩阵,并基于等效电路原理给出了驱动电压与换能器振动速度之间的关系。最后,通过优化方法计算出阵列的驱动电压加权矢量,得到低旁瓣投影光束图案。对14个元素的保形阵列进行计算机仿真。已经进行了实验来测量消声水箱中阵列的辐射方向性。计算结果和实验结果表明,所提出的方法成功地解决了挡板的声学效应和换能器之间的相互影响,并获得了低旁瓣投影光束模式,同时提供了最大的压力幅值。驱动电压加权矢量的最大振幅保持不变时的轴向。

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