Improved C-scan imaging using a Bayesian approach

K. S. Ho, S. Pierce, M. H. Li, G. Hayward, M. Sultan
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引用次数: 1

Abstract

Conventional ultrasonic C-scan imaging in composite materials typically employs peak amplitude extraction where the obtained image quality is extremely dependent on the gate setup on the ultrasonic acquisition hardware. Additionally structural noise created by scattering phenomenon is often high enough to bury meaningful reflection echoes, due to the non-homogeneous nature of such materials. This paper investigates the use of Bayesian inference as a method to construct C-scan images of composite material. The approach was implemented using experimental pulse-echo data, obtained by single-sided inspection of carbon fibre reinforced composite plates containing impact damages. The results were compared to through-transmission measurements and show that the defect image contrast can be improved by using the Bayes' method.
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使用贝叶斯方法改进c扫描成像
传统的复合材料超声c扫描成像通常采用峰值振幅提取,其中获得的图像质量非常依赖于超声采集硬件上的栅极设置。此外,由于这种材料的非均匀性,散射现象产生的结构噪声通常高到足以掩盖有意义的反射回波。本文研究了利用贝叶斯推理构造复合材料c扫描图像的方法。该方法利用含冲击损伤的碳纤维增强复合材料板单面检测得到的脉冲回波实验数据来实现。结果与透射测量结果进行了比较,表明贝叶斯方法可以提高缺陷图像的对比度。
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