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Development of an UAS for post-earthquake disaster surveying and its application in Ms7.0 Lushan Earthquake, Sichuan, China

机译:用于地震灾后测量的UAS的开发及其在四川芦山Ms7.0地震中的应用

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摘要

The main objective of early impact analysis after a disaster is to produce georeferenced data about the affected areas, in support of humanitarian action. Crucial information is the identification of the disaster areas and the estimation of the number of people involved. Satellite imageries are mainly used as input data for early impact analysis in medium and large scale map. Analyses aimed at defining the damages of infrastructure and/or to facilities require suitable data, such as high resolution satellite images. Unfortunately, satellite images are not always available in a few days after the event. Therefore in situ surveys are preferred. Innovations in Unmanned Aircraft System (UAS) have allowed them to become valuable tools in capturing and assessing the extents and amount of damages. Flexibility, safety, ease of operation, and relatively low-cost of ownership and operation facilitate UAS implementation in disaster situations. In this paper, an example of UAS was developed for rapidly obtaining disaster information. Data acquisition at specified scales was successfully performed with the chosen fixed-wing UAS. For the image analysis, a photogrammetric workflow was applied to cope with the very high resolution of the images acquired without ground control points. Tests showed that the system plays an important role in the work of investigating and gathering information about disaster in epicentral areas of the earthquake, such as road detection, secondary disaster investigation, and rapid disaster evaluation. It can effectively provide earthquake information to salvation headquarters for swiftly developing the relief measures and improving the efficiency of emergency rescue.
机译:灾难后进行早期影响分析的主要目标是生成有关受灾地区的地理参考数据,以支持人道主义行动。重要信息是对灾区的识别和对涉及人数的估计。卫星图像主要用作中,大型地图早期影响分析的输入数据。旨在确定基础设施和/或设施损坏的分析需要适当的数据,例如高分辨率卫星图像。不幸的是,活动结束后的几天内,卫星图像并非总是可用。因此,首选现场调查。无人机系统(UAS)的创新使它们成为捕获和评估损害程度和金额的宝贵工具。灵活性,安全性,易操作性以及相对较低的拥有和运营成本,有助于在灾难情况下实施UAS。在本文中,开发了一个UAS实例来快速获取灾难信息。使用所选的固定翼UAS成功完成了指定规模的数据采集。对于图像分析,采用摄影测量工作流程来应对在没有地面控制点的情况下获得的高分辨率图像。测试表明,该系统在调查和收集地震震中地区的灾难信息方面起着重要作用,例如道路检测,二次灾难调查和快速灾难评估。它可以有效地向救灾指挥部提供地震信息,以迅速制定救灾措施,提高应急救援效率。

著录项

  • 来源
    《Computers & geosciences》 |2014年第7期|22-30|共9页
  • 作者单位

    Institute of Geophysics, China Earthquake Administration, Beijing 100081, China;

    Institute of Geophysics, China Earthquake Administration, Beijing 100081, China;

    Institute of Geophysics, China Earthquake Administration, Beijing 100081, China;

    Beijing Digital LandView Technology Company Limited, Beijing 100085, China;

    Institute of Geophysics, China Earthquake Administration, Beijing 100081, China;

    Beijing Digital LandView Technology Company Limited, Beijing 100085, China;

    Institute of Geophysics, China Earthquake Administration, Beijing 100081, China;

    Institute of Geophysics, China Earthquake Administration, Beijing 100081, China;

    Institute of Geophysics, China Earthquake Administration, Beijing 100081, China;

    Institute of Geophysics, China Earthquake Administration, Beijing 100081, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Unmanned aircraft system; Emergency rescue; Disaster assessment; Regional panorama; Photogrammetry;

    机译:无人飞机系统;紧急救援;灾害评估;区域全景;摄影测量;

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