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Calculation of 3-D Acoustic Scattering Characteristics of a Target in Near-Field at High-Frequency

机译:高频近场目标的3-D声散射特性计算

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3-D acoustic scattering characteristics calculation will play an important role in characteristic prediction, reduction and identification of an underwater target. In this paper, 3-D acoustic scattering characteristics of an underwater complex target in near-field at high-frequency is effectively calculated based on principle of multi-beam forming and rotating platform imaging using the backprojection (BP) algorithm. To generate the 3-d acoustic image of an underwater volumetric target, a sonar array with linear equally spaced elements in the vertical direction is fixed, and the target rotates in the horizontal plane around a fixed vertical axis. Each element in the array transmits a high-frequency signal and receives the echo while the target rotates at a certain aspect. Firstly, the height information at a certain angle is obtained by beamforming in frequency domain. Then two dimensional acoustic scattering characteristics in both range and cross range of each beam is reconstructed by the BP algorithm in t he rotating platform imaging. By this method, the 3-d acoustic scattering characteristics of the generic BASIS submarine are reconstructed. Experiment shows the validity of the method.
机译:3-D声散射特征计算将在水下目标的特征预测,减少和识别中发挥重要作用。本文基于多波束形成和旋转平台成像的原理,利用反投影(BP)算法,有效地计算了水下近距离目标在高频下的3-D声散射特性。为了生成水下体积目标的3-d声像,固定在垂直方向上具有线性等距元素的声纳阵列,并且目标在水平面中绕固定的垂直轴旋转。当目标旋转时,阵列中的每个元素都会发射高频信号并接收回波。首先,通过在频域中进行波束成形来获得一定角度的高度信息。然后,在旋转平台成像中,通过BP算法重建了每个波束在范围和跨范围内的二维声散射特性。通过这种方法,可以重建通用BASIS潜艇的3-d声散射特性。实验证明了该方法的有效性。

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