Independent component analysis for pulse compressed frequency modulated thermal wave imaging for inspection of mild steel

K. Kaur, Ravibabu Mulaveesala, Anju Rani, V. Kher
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引用次数: 0

Abstract

Non-destructive testing & evaluation plays a crucial role in various sectors for testing the reliability of materials. Of the different available non-destructive examination techniques, thermal non-destructive testing provides fast and remote inspection of the materials. Among various widely used thermal non-destructive testing techniques, frequency modulated thermal wave imaging gained its importance due to its higher test sensitivity and resolution. The adopted matched filter approach on the obtained temporal temperature distribution further concentrates supplied excitation energy into a narrow duration high peak power pulse. In this paper, the merits of the reconstructed high peak power pulsed data have been considered and emphasized in the context of independent component analysis. The obtained results clearly indicate that pulse compressed data improves defect detectability, reliability, memory usage, and computational complexity.
低碳钢检测用脉冲压缩调频热波成像的独立分量分析
无损检测与评价在各个领域对材料的可靠性检测起着至关重要的作用。在各种可用的无损检测技术中,热无损检测提供了对材料的快速和远程检测。在各种广泛应用的热无损检测技术中,调频热波成像以其较高的检测灵敏度和分辨率而受到重视。对得到的时间温度分布采用匹配滤波的方法,进一步将供给的激励能集中为窄持续时间的峰值功率脉冲。本文从独立分量分析的角度考虑并强调了峰值脉冲数据重构的优点。得到的结果清楚地表明,脉冲压缩数据提高了缺陷可检测性、可靠性、内存使用和计算复杂性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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