首页> 外文会议>Conference on Interferometry XI: Techniques and Analysis, Jul 8-10, 2002, Seattle, USA >Scaled multisensor inspection of extended surfaces for industrial quality control
【24h】

Scaled multisensor inspection of extended surfaces for industrial quality control

机译:扩展表面的缩放多传感器检测,以进行工业质量控制

获取原文
获取原文并翻译 | 示例

摘要

Reliable real-time surface inspection of extended surfaces with high resolution is needed in several industrial applications. With respect to an efficient application to extended technical components such as aircraft or automotive parts, the inspection system has to perform a robust measurement with a ratio of less then 10~(-6) between depth resolution and lateral extension. This ratio is at least one order beyond the solutions that are offered by existing technologies. The concept of scaled topometry consists of arranging different optical measurement techniques with overlapping ranges of resolution systematically in order to receive characteristic surface information with the required accuracy. In such a surface inspection system, an active algorithm combines measurements on several scales of resolution and distinguishes between local fault indicating structures with different extensions and global geometric properties. The first part of this active algorithm finds indications of critical surface areas in the data of every measurement and separates them into different categories. The second part analyses the detected structures in the data with respect to their resolution and decides whether a further local measurement with a higher resolution has to be performed. The third part positions the sensors and starts the refined measurements. The fourth part finally integrates the measured local data set into the overall data mesh. We have constructed a laboratory setup capable of measuring surfaces with extensions up to 1500mm x 1000mm x 500mm (in x-, y- and z-direction respectively). Using this measurement system we will be able to separate the fault indicating structures on the surface from the global shape and to classify the detected structures according to their extensions and characteristic shapes simultaneously. The level of fault detection probability will be applicable by input parameter control.
机译:在一些工业应用中,需要对高分辨率的扩展表面进行可靠的实时表面检查。对于有效地应用于扩展的技术组件(例如飞机或汽车部件),检查系统必须以深度分辨率与横向扩展之比小于10〜(-6)的方式执行可靠的测量。该比率至少比现有技术提供的解决方案高一个数量级。比例尺形貌的概念包括系统地布置具有重叠的分辨率范围的不同光学测量技术,以便以所需的精度接收特征表面信息。在这样的表面检查系统中,一种主动算法结合了几个分辨率级别的测量结果,并在具有不同扩展名的局部故障指示结构与整体几何特性之间进行区分。该主动算法的第一部分在每次测量的数据中找到关键表面积的指示,并将其分为不同的类别。第二部分就其分辨率对数据中检测到的结构进行分析,并确定是否需要执行更高分辨率的局部测量。第三部分放置传感器并开始精确的测量。第四部分最后将测量的本地数据集集成到整个数据网格中。我们已经建立了一个实验室装置,能够测量延伸到1500mm x 1000mm x 500mm(分别在x,y和z方向上)的表面。使用该测量系统,我们将能够从整体形状上分离出表面上的故障指示结构,并同时根据其扩展和特征形状对检测到的结构进行分类。故障检测概率的级别将通过输入参数控制来应用。

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