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首页> 外文期刊>International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences >DEFECT DETECTION OF HISTORIC STRUCTURES IN DARK PLACES BASED ON THE POINT CLOUD ANALYSIS BY MODIFIED OptD METHOD
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DEFECT DETECTION OF HISTORIC STRUCTURES IN DARK PLACES BASED ON THE POINT CLOUD ANALYSIS BY MODIFIED OptD METHOD

机译:基于Coptied Optd方法的点云分析,缺陷暗处历史结构的缺陷检测

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摘要

Data provided by Light Detection And Ranging (LiDAR) can be very useful, and their applications are very diverse. Information about the reflection, its intensity values of individual points give the possibility of a realistic visualization of the entire scanned object. This use of LiDAR is very important in improving safety and avoiding disasters. The use of LiDAR technology allows to 'look' and extract information about the structure of the object without the need for external lighting or daylight. In the paper the results of Terrestrial Laser Scanning (TLS) measurements conducted by means of the Leica C-10 scanner will be presented. The measurement will be performed in rooms without daylight: in the basement of the ruins of the medieval tower located in Dobre Miasto and in the basement of a century-old building located at the University of Warmia and Mazury in Olsztyn. Next, the obtained dataset of x, y, z and intensity will be processed using the Optimum Dataset (OptD) method. The application of the OptD allows to keep more points of interest area where surface is imperfect (e.g. cracks and cavities) and reduce more points of the low interest homogeneous surface (redundant information). The OptD algorithm was additionally modified by detecting and segmentation defects on a scale from 0 to 3 such as (0) harmless, (1) to the inventory, (2) requiring repair, (3) dangerous. The obtained survey results proved the high effectiveness of the modified OptD method in detection and segmentation wall defects.
机译:通过光检测和测距(LIDAR)提供的数据可能非常有用,并且它们的应用是非常多样化的。关于反射的信息,其各个点的强度值具有完全可视化整个扫描对象的可能性。这种利用LIDAR在提高安全性和避免灾难方面非常重要。 LIDAR技术的使用允许“看”并提取有关物体结构的信息,而无需外部照明或日光。在纸质中,将呈现通过Leica C-10扫描仪进行的陆地激光扫描(TLS)测量的结果。测量将在没有日光的情况下在房间进行:在位于Dobre Miasto的中世纪塔的地下室,位于奥尔西省莫斯蒂亚大学的一个世纪古老的大厦的地下室。接下来,将使用最佳数据集(OptD)方法处理所获得的X,Y,Z和强度。 OPTD的应用允许保持表面不完全(例如裂缝和腔)的更多感兴趣区域,并减少低息均匀表面的更多点(冗余信息)。通过从0到3的比例的测量值检测和分割缺陷另外修改OPTD算法,例如(0)无害,(1)到库存,(2)需要修复,(3)危险。所获得的调查结果证明了改进的OPTD方法在检测和分割壁缺陷中的高效性。

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