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3D reconstruction of disaster scenes for urban search and rescue

机译:灾难现场的3D重建以进行城市搜救

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Natural and man-made disasters that may take place due to a catastrophic incident (e.g., earthquake, explosion, terrorist attack) often result in trapped humans under rubble piles. In such emergency response situations, Urban Search and Rescue (USaR) teams have to make quick decisions under stress in order to determine the location of possible trapped victims. Fast 3D modelling of fully or partially collapsed buildings using images from Unmanned Aerial Vehicles (UAVs) can considerably help USaR efforts, thus improving disaster response and increasing survival rates. The a-priori establishment of a proper workflow for fast and reliable image-based 3D modelling and the a priori determination of the parameters that have to be set in each step of the photogrammetric pipeline are critical aspects that ensure the readiness in an emergency response situation. This paper evaluates powerful commercial and open-source software solutions for the 3D reconstruction of disaster scenes for rapid response situations. The software packages are tested using UAV datasets of a real earthquake scene. A thorough analysis on the parameters of the various modelling steps that may lead to desired results for USaR tasks is made and indicative processing chains are proposed, taking into account the restriction of time. Furthermore, some weaknesses of the data acquisition process that have been detected by performing the experiments are outlined and some improvements and additions are proposed, including an initial preprocessing of the images using a graph-based approach.
机译:由于灾难性事件(例如地震,爆炸,恐怖袭击)可能发生的自然和人为灾难通常导致被困在瓦砾堆中的人类。在这种紧急情况下,城市搜救(USaR)团队必须在压力下迅速做出决定,以确定可能被困受害者的位置。使用无人飞行器(UAV)的图像对完全或部分倒塌的建筑物进行快速3D建模可以极大地帮助USaR开展工作,从而改善灾难响应并提高生存率。先验建立适当的工作流程以进行快速,可靠的基于图像的3D建模以及在摄影测量管线的每个步骤中预先确定必须设置的参数是确保在紧急情况下准备就绪的关键方面。本文评估了用于快速响应情况下灾难现场的3D重建的功能强大的商业和开源软件解决方案。使用真实地震场景的无人机数据集对软件包进行了测试。考虑到时间的限制,对可能导致USaR任务预期结果的各种建模步骤的参数进行了全面分析,并提出了指示性处理链。此外,概述了通过执行实验发现的数据采集过程中的一些缺点,并提出了一些改进和补充,包括使用基于图的方法对图像进行初始预处理。

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