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Barker coded thermal wave imaging for anomaly detection

机译:Barker编码的热波成像用于异常检测

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摘要

Barker code is a promising pulse compression friendly code useful for side lobe reduction and energy coagulation in main lobe to facilitate target identification in RADAR. It has been recently introduced in active thermal wave detection and ranging (TWDAR) for reliable subsurface analysis by replication of all its RADAR features for diffusive thermal waves and proved as one of the emerging anomaly detection modality with better resolution and detection capabilities. This paper presents an experimental study to assure these features using a Kevlor composite sample containing Teflon patches to simulate artificial delaminations, and CFRP specimen containing flat bottom holes using time domain pulse compression processing method and recently introduced orthonormal projection approach and compared its edge over the conventional FFT based phase analysis approaches.
机译:Barker码是一种很有前途的脉冲压缩友好码,可用于减少旁瓣和主瓣中的能量凝结,以促进RADAR中的目标识别。它已被复制到有源热波检测和测距(TWDAR)中,通过复制其对扩散热波的所有RADAR功能来进行可靠的地下分析,并被证明是新兴的异常检测方式之一,具有更好的分辨率和检测能力。本文提出了一项实验研究,以确保使用包含特氟龙贴片的Kevlor复合材料样本来模拟人工分层,并使用时域脉冲压缩处理方法以及最近引入的正交投影方法将包含平底孔的CFRP样本确保具有这些特征,并将其边缘与常规基于FFT的相位分析方法。

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