基于二维等效声速的频域全聚焦超声成像研究
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TG115.28 TH878

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江西省教育厅项目(GJJ180525)、江西省研究生创新专项资金(YC2022-s740)、江西省图像处理与模式识别重点实验室开放基金(ET202008414)项目资助


Research on frequency-domain full-focus ultrasound imaging based on two-dimensional equivalent sound velocity
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    摘要:

    为了提高对碳纤维增强复合材料分层缺陷定位定量的精度,提出了一种基于二维等效声速映射的精准频域全聚焦方法 三维成像技术。 该技术首先将子矩阵的划分标准从激励点位置变为激励-接收间距,获得了一个新的全矩阵数据;然后将变换 后的二维子矩阵变换至频域,根据深度和空间频率的变化推导出精准的二维等效声速映射,来匹配子矩阵数据中的收发分离信 号,并结合角谱运算得到子矩阵频域重构图;运用快速傅里叶逆变换得到子矩阵聚焦图并将其融合得到全聚焦图像;最后运用 多平面三维重构技术得到最终三维图像。 结果表明,与传统 F-TFM 和 F-SAFT 算法相比,所提算法有效抑制了旁瓣效应的产 生,双缺陷间距的定量误差缩减了 20. 31% ,缺陷宽度定量误差分别缩减了 5. 43% 和 6. 3% ;当缺陷深度和双缺陷间距发生变化 时仍可保证较高的检测灵敏度。

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    To improve the accuracy of positioning and quantifying delamination defects in carbon fiber reinforced polymer, a precise frequency domain total focusing method three-dimensional imaging technology based on two-dimensional equivalent sound velocity mapping is proposed. This technique first changes the division standard of the sub-matrix from the excitation point position to the excitation-receiver spacing, and obtains a new full matrix data. Then, the transformed two-dimensional sub-matrix is transformed into the frequency domain. According to the change of depth and spatial frequency, an accurate two-dimensional equivalent sound velocity mapping is derived to match the transceiver separation signal in the sub-matrix data, and the sub-matrix frequency domain reconstruction diagram is obtained by combining the angular spectrum operation. The sub-matrix focusing image is obtained by inverse fast Fourier transform and fused to obtain the full focusing image. Finally, the final three-dimensional image is obtained by using multi-plane threedimensional reconstruction technology. Compared with the traditional F-TFM and F-SAFT algorithms, the results show that the proposed algorithm effectively suppresses the generation of side lobe effect. The quantitative error of double defect spacing is reduced by 20. 31% , and the quantitative error of defect width is reduced by 5. 43% and 6. 3% , respectively. When the defect depth and the double defect spacing change, the higher detection sensitivity can still be guaranteed.

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陈学宽,龙盛蓉,宋奕霖,邹越豪,李志农.基于二维等效声速的频域全聚焦超声成像研究[J].仪器仪表学报,2023,44(8):130-140

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  • 在线发布日期: 2023-12-19
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