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First steps towards an innovative compressive sampling based-THz imaging system for early crack detection on aereospace plates

机译:朝着创新的基于压缩采样的太赫兹成像系统迈出的第一步,该系统可用于早期探测航空航天板上的裂纹

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The paper deals with the problem of early detecting cracks in composite materials for avionic applications. In particular, the authors present a THz imaging system that exploits compressive sampling (CS) to detect submillimeter cracks with a reduced measurement burden. Traditional methods for THz imaging usually involve raster scan of the issue of interest by means of highly collimated radiations and the corresponding image is achieved by measuring the received THz power in different positions (pixels) of the desired image. As it can be expected, the higher the required resolution, the longer the measurement time. On the contrary, two different approaches for THz imaging (namely, continuous wave and time domain spectroscopy) combined with a proper CS solution are used to assure as good results as those granted by traditional raster scan; a proper set of masks (each of which characterized by a specific random pattern) are defined to the purpose. A number of tests conducted on simulated data highlighted the promising performance of the proposed method thus suggesting its implementation in an actual measurement setup.
机译:本文涉及早期发现航空电子复合材料中的裂纹的问题。特别是,作者提出了一种THz成像系统,该系统可利用压缩采样(CS)来检测亚毫米裂纹,从而减轻了测量负担。用于THz成像的传统方法通常涉及通过高度准直的辐射对感兴趣的问题进行光栅扫描,并且通过在所需图像的不同位置(像素)测量接收到的THz功率来获得相应的图像。可以预期,所需的分辨率越高,测量时间就越长。相反,太赫兹成像的两种不同方法(即连续波和时域光谱法)与适当的CS解决方案结合使用,可确保获得与传统光栅扫描相同的良好结果。为此目的定义了适当的一组遮罩(每个遮罩均具有特定的随机图案)。在模拟数据上进行的大量测试突出表明了该方法的有希望的性能,从而表明了其在实际测量设置中的实现。

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