首页> 外文会议>Annual Conference of the British Institute of Non-Destructive Testing >Real-time full matrix capture with auto-focussing of known geometry through dual layered media
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Real-time full matrix capture with auto-focussing of known geometry through dual layered media

机译:通过双层媒体自动聚焦已知几何的实时全矩阵捕获

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A full matrix capture technique is presented that allows for real-time imaging through a non-planar surface where the geometry is known. For an identified geometry the point of incidence at the refractive interface is calculated using Fermat's principle and iterative techniques for each possible transducer position which is pre-processed ahead of the inspection. This information is combined with the transducer's encoded position during the inspection process with post-processing of ultrasonic data performed over the graphic processing unit. This is shown to allow for rapid imaging of ultrasonic data by firstly reducing the need to auto-focus through the media, and secondly by exploiting the parallelisation power of the graphic card. To demonstrate this, a linear array transducer was mounted to a Perspex wedge where the technique was applied to generate ultrasonic imagery of side drilled holes through a curved surface. This is shown to offer significant performance over traditional full matrix imaging with low implementation and development costs.
机译:提出了一种全矩阵捕获技术,其允许通过非平面表面进行实时成像,其中几何形状是已知的。对于所识别的几何形状,使用Fermat的原理和迭代技术来计算屈光界面的入射点,用于每个可能的换能器位置,其在检查之前预处理。在检查过程中,该信息与换能器的编码位置相结合,通过在图形处理单元上执行的超声数据的后处理。这示出了允许通过首先减少通过介质自动聚焦的需要快速成像超声数据,其次是通过利用图形卡的平行电力。为了证明这一点,将线性阵列换能器安装到Perspex楔形楔,其中应用了通过弯曲表面产生侧钻孔的超声图像。这被证明可以提供具有低实现和开发成本的传统全矩阵成像的显着性能。

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