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Deformation Monitoring System Based on 2D-DIC for Cultural Relics Protection in Museum Environment with Low and Varying Illumination

机译:基于2D-DIC的照明度低变的博物馆环境文物保护变形监测系统

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Quantifying the condition of large cultural relics, such as marine archaeological shipwreck, is important to verify stability and reliability. Deformation monitoring system plays a key role in the preservation and long-term conservation of cultural relics. Two-dimensional digital image correlation (2D-DIC) method has proven its efficiency in being able to provide accurate quantitative information of structural deformations. In this study, a deformation monitoring system with four cameras based on 2D-DIC is developed to perform noncontact, optically based measurement to monitor the deformation of shipwreck in museum environment with low and varying illumination. Because the consistency of the accuracy of 2D-DIC measurements for different locations is the most basic requirement in the application of structural deformation monitoring, selecting the appropriate exposure time and quantifying the bias errors on 2D-DIC measurements should be helpful to the optimal use of this optical nondestructive testing technique. A theoretical criterion is deduced to quantitatively characterize the dependence of interpolation bias upon natural patterns and illuminations. Then, an exposure adjustment scheme is built based on the aforementioned criterion. Numerical experiments reveal that the exposure adjustment scheme is able to provide consistency interpolation error for different natural patterns even though the environmental illumination is different as well. The deformation monitoring system with the proposed exposure adjustment scheme is promising for developing flexible and robust in situ structural health monitoring for use inmuseum environment with low and varying illumination, making 2D-DIC technique a really useful tool for in situ long-termmonitoring of large cultural relics.
机译:量化大型文物的状况,例如海洋考古沉船,对于验证稳定性和可靠性很重要。变形监测系统在文物的保存和长期保存中起着关键作用。二维数字图像相关(2D-DIC)方法已证明其能够提供准确的结构变形定量信息的效率。在这项研究中,开发了一种基于2D-DIC的具有四个摄像头的变形监测系统,以执行基于光学的非接触式测量,以在光照低且变化多的博物馆环境中监测沉船的变形。由于在不同位置进行2D-DIC测量的准确性的一致性是应用结构变形监测的最基本要求,因此选择合适的曝光时间并量化2D-DIC测量中的偏差误差应该有助于优化使用这种光学无损检测技术。推导了理论标准以定量表征内插偏差对自然图案和照明的依赖性。然后,基于上述标准建立曝光调整方案。数值实验表明,即使环境照度不同,曝光调整方案也能够为不同的自然模式提供一致性插值误差。带有拟议的曝光调整方案的变形监测系统有望为在光照低且变化多的博物馆环境中使用而开发灵活,强大的现场结构健康监测,使2D-DIC技术成为对大型文化遗址进行长期现场监测的真正有用的工具。文物。

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