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3D-visyalisation of NDT data using a data fusion technique

机译:使用数据融合技术对NDT数据进行3D可视化

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Non-destructive testing of concrete structures is performed using pulse-echo methods. According to the type of the applied waves it can be classified as acoustic (impact-echo, ultrasonics) and electromagnetic methods (radar). The results are visualised through different imaging processes. This work is performed in the frame of a research project promoted by Deutsche Forschungsgemeinschaft (FOR384). The objective of data fusion is to use the complementary information of the different methods. Radar can detect metallic reflectors in concrete (metallic ducts and concrete reinforcement) very well. This method is not able to locate defects behind these reflectors (injecting defects, defects behind close concrete reinforcement), because the electromagnetic waves are completely reflected at metals. The acoustic methods are able to compensate this deficit is acoustic waves can penetrate through metal. However, acoustic waves in the ultrasonic range are completely reflected by air layers. Air layers have a smaller influence on radar propagation, so that both methods complement each other. In order to be able to combine the NDT data from several methods records at the same volume, the different data sets of signals must be adapted. The ultrasonic and radar data have to be reconstructed with programs based on the Synthetic Aperture Focusing Technique (SAFT) before data fusion. Subsequently, a conversion of the data into a uniform format has to be carried out. This is a prerequisite in order to keep the data exchange between the project partners as simple as possible. After the data sets are imported and transferred into a common reference system, they can be processed with operations according to the purpose of the investigation. Results, which have been achieved in concrete test specimen with radar and ultrasonics, will be presented and will show the feasibility of the data fusion method.
机译:混凝土结构的无损检测使用脉冲回波法进行。根据所施加的波的类型,可以将其分类为声学(冲击回波,超声波)和电磁方法(雷达)。通过不同的成像过程将结果可视化。这项工作是在由Deutsche Forschungsgemeinschaft(FOR384)推动的研究项目的框架中完成的。数据融合的目的是使用不同方法的补充信息。雷达可以很好地检测混凝土中的金属反射器(金属管道和混凝土钢筋)。该方法无法在这些反射器后面定位缺陷(注入缺陷,紧密混凝土钢筋后面的缺陷),因为电磁波已在金属上完全反射。声学方法能够弥补这种缺陷,因为声波可以穿透金属。但是,超声波范围内的声波被空气层完全反射。空气层对雷达传播的影响较小,因此两种方法相互补充。为了能够以相同的音量组合来自多个方法记录的NDT数据,必须适应信号的不同数据集。在数据融合之前,必须使用基于合成孔径聚焦技术(SAFT)的程序来重建超声和雷达数据。随后,必须将数据转换为统一格式。这是保持项目伙伴之间的数据交换尽可能简单的前提。将数据集导入并传输到通用参考系统后,可以根据调查目的通过操作对其进行处理。将介绍用雷达和超声波在混凝土试件中取得的结果,并将证明该数据融合方法的可行性。

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