...
首页> 外文期刊>Structural health monitoring >Photogrammetry-based structural damage detection by tracking a visible laser line
【24h】

Photogrammetry-based structural damage detection by tracking a visible laser line

机译:通过跟踪可见激光线,基于摄影测量的结构损伤检测

获取原文
获取原文并翻译 | 示例
           

摘要

Research works on photogrammetry have received tremendous attention in the past few decades. One advantage of photogrammetry is that it can measure displacement and deformation of a structure in a fully non-contact, full-field manner. As a non-destructive evaluation method, photogrammetry can be used to detect structural damage by identifying local anomalies in measured deformation of a structure. Numerous methods have been proposed to measure deformations by tracking exterior features of structures, assuming that the features can be consistently identified and tracked on sequences of digital images captured by cameras. Such feature-tracking methods can fail if the features do not exist on captured images. One feasible solution to the potential failure is to artificially add exterior features to structures. However, painting and mounting such features can introduce unwanted permanent surficial modifications, mass loads, and stiffness changes to structures. In this article, a photogrammetry-based structural damage detection method is developed, where a visible laser line is projected to a surface of a structure, serving as an exterior feature to be tracked; the projected laser line is massless and its existence is temporary. A laser-line-tracking technique is proposed to track the projected laser line on captured digital images. Modal parameters of a target line corresponding to the projected laser line can be estimated by conducting experimental modal analysis. By identifying anomalies in curvature mode shapes of the target line and mapping the anomalies to the projected laser line, structural damage can be detected with identified positions and sizes. An experimental investigation of the damage detection method was conducted on a damaged beam. Modal parameters of a target line corresponding to a projected laser line were estimated, which compared well with those from a finite element model of the damaged beam. Experimental damage detection results were validated by numerical ones from the finite element model.
机译:摄影测量学的研究工作在过去的几十年中受到了极大的关注。摄影测量的一个优点是,它可以完全非接触,全视野的方式测量结构的位移和变形。作为一种非破坏性评估方法,摄影测量法可用于通过识别结构的测量变形中的局部异常来检测结构损坏。已经提出了许多通过跟踪结构的外部特征来测量变形的方法,假设这些特征可以在由照相机捕获的数字图像序列上被一致地识别和跟踪。如果捕获的图像上不存在这些特征,则此类特征跟踪方法可能会失败。解决潜在故障的一种可行方法是人为地为结构添加外部特征。但是,喷涂和安装此类特征会给结构带来不必要的永久性表面修饰,质量载荷和刚度变化。在本文中,开发了一种基于摄影测量的结构损伤检测方法,该方法将可见的激光线投射到结构的表面,作为要跟踪的外部特征。投射的激光线是无质量的,其存在是暂时的。提出了一种激光线跟踪技术来跟踪捕获的数字图像上的投影激光线。可以通过进行实验模态分析来估计与投影激光线相对应的目标线的模态参数。通过识别目标线的曲率模式形状中的异常并将异常映射到投影的激光线,可以通过识别出的位置和大小来检测结构损坏。对损坏的光束进行损坏检测方法的实验研究。估算了与投影激光线相对应的目标线的模态参数,并将其与受损光束的有限元模型的模态参数进行了很好的比较。实验损伤检测结果通过有限元模型的数值验证。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号