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Locating Point of Impact on an Anisotropic Cylindrical Surface using Acoustic Beamforming Technique

机译:声束成形技术在各向异性圆柱表面上的冲击定位点

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A beamforming array technique with four sensors is applied to a cylindrical geometry for detecting point of impact. A linear array of acoustic sensors attached to the plate record the waveforms of Lamb waves generated at the impact point with individual time delay. A beamforming technique in conjunction with an optimization scheme that incorporates the direction dependent guided Lamb wave speed in cylindrical plates is developed. The optimization is carried out using the experimentally obtained wave speed as a function of propagation direction. The maximum value in the beamforming plot corresponds to the predicted point of impact. The proposed technique is experimentally verified by comparing the predicted points with the exact points of impact on a cylindrical aluminum plate and a cylindrical composite shell. For randomly chosen points of impact the beamforming technique successfully predicts the location of the acoustic source.
机译:具有四个传感器的波束成形阵列技术被应用于圆柱几何形状以检测碰撞点。附着在板上的线性声传感器阵列记录了在冲击点处产生的兰姆波的波形,并具有各自的时间延迟。结合优化方案的波束成形技术得到了发展,该方案在圆柱板上结合了与方向相关的引导兰姆波速度。使用实验获得的波速作为传播方向的函数进行优化。波束成形图中的最大值对应于预测的冲击点。通过比较预测的点和在圆柱铝板上和圆柱复合壳上的精确冲击点,对所提出的技术进行了实验验证。对于随机选择的冲击点,波束成形技术成功地预测了声源的位置。

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