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GPU accelerated 3-D ultrasonic flaw imaging using full waveforms sampling and processing technique
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- NAKAHATA Kazuyuki
- Graduate Schools of Science and Engineering, Ehime University
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- HORIGUCHI Takashi
- Graduate Schools of Science and Engineering, Ehime University
Bibliographic Information
- Other Title
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- GPU計算を実装した全波形サンプリング処理方式による内部欠陥の三次元超音波映像化
Description
We develop a three dimensional (3-D) flaw imaging system using the full waveforms sampling and processing (FSAP) technique and an ultrasonic matrix array transducer. In FSAP, each array element is sequentially used as an emitter and all other array elements are used as receivers. By changing the emitting element, we obtain a set of signals of every two-element combination. The combination of all signals enables the generation of focal beams at any point in the region of interest. Using the focal beams, we can reconstruct high-resolution 3-D images of flaws. In this study, we introduce massively parallel calculations with graphics processing unit (GPU) to accelerate the beam-forming in FSAP. Here, we implement the GPU accelerated FSAP on a signal acquisition system with a multiplexer, which can rapidly switch the ultrasonic transmission and reception. We validate the performance of the FSAP imaging system by 3-D numerical simulations with the elastodynamic integration technique and experimental measurements with an acrylic specimen. The results show high-speed calculation of the beam-forming, and accurate and clear flaw images.
Journal
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- Transactions of the JSME (in Japanese)
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Transactions of the JSME (in Japanese) 81 (832), 15-00471-15-00471, 2015
The Japan Society of Mechanical Engineers
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Keywords
Details 詳細情報について
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- CRID
- 1390282680493462400
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- NII Article ID
- 130005118111
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- ISSN
- 21879761
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- Text Lang
- ja
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- Article Type
- journal article
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- Data Source
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- JaLC
- Crossref
- CiNii Articles
- KAKEN
- OpenAIRE
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- Abstract License Flag
- Disallowed