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Full-frame thermographic super-resolution with 2D-structured laser heating

机译:具有2D结构激光加热的全架热量超级分辨率

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Thermographic super-resolution techniques allow the resolution of dcfccts/inhomogcncitics beyond the classical limit, which is governed by the diffusion properties of thermal wave propagation. Photothermal super-resolution is based on a combination of an experimental scanning strategy and a numerical optimization which has been proven to be superior to standard thermographic methods in the case of 1D linear defects. In this contribution, we report on the extension of this approach towards a full frame 2D photothermal super-resolution technique. The experimental approach is based on a repeated spatially structured heating using high power lasers. In a second post-processing step, several measurements are coherently combined using mathematical optimization and taking advantage of the (joint) sparsity of the defects in the sample. In our work we extend the possibilities of the met hod to efficiently detect and resolve defect cross sections with a fully 2D-structured blind illumination.
机译:热显超分辨率技术允许分辨率超出经典极限的DCFCCTS / Inhomcncitics,其由热波传播的扩散特性控制。 光热超分辨率基于实验扫描策略的组合和数值优化,该数值优化在1D线性缺陷的情况下被证明是优于标准的热成像方法。 在这一贡献中,我们向全帧2D光热超分辨率技术报告了这种方法的扩展。 实验方法基于使用高功率激光器的重复的空间结构加热。 在第二后处理步骤中,使用数学优化并利用样品中缺陷的(关节)稀疏性相干地结合多次测量。 在我们的工作中,我们延长了MET HOD的可能性,以有效地检测和解决缺陷横截面,具有完全2D结构的盲照觉。

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