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Search and Rescue Rotary-Wing UAV and Its Application to the Lushan Ms 7.0 Earthquake

机译:搜救旋翼无人机及其在庐山7.0级地震中的应用

摘要

Rapid search and rescue responses after earthquakes or in postseismic evaluation tend to be extremely difficult. To solve this problem, we summarized the requirements of search and rescue rotary-wing unmanned aerial vehicle (SR-RUAV) systems according to related works, manual earthquake search and rescue, and our knowledge to guide our research works. Based on these requirements, a series of research and technical works have been conducted to present an efficient SR-RUAV system. To help rescue teams locate interested areas quickly, a collapsed-building detecting approach that integrates low-altitude statistical image processing methods was proposed, which can increase survival rates by detecting collapsed buildings in a timely manner. The entire SR-RUAV system was illustrated by simulated earthquake response experiments in the China National Training Base for Search and Rescue (CNTBSR) from 2008 to 2010. On April 20, 2013, Lushan (China) experienced a disastrous earthquake (magnitude 7.0). Because of the distribution of buildings in the rural areas, it was impossible to implement a rapid search and postseismic evaluation via ground searching. We provided our SR-RUAV to the Chinese International Search and Rescue Team (CISAR) and accurately detected collapsed buildings for ground rescue guidance at low altitudes. This system was significantly improved with respect to its searching/planning strategy and vision-based evaluation in different environments based on the lessons learned from actual missions after the earthquake. The SR-RUAV has proved to be applicable and time saving. The physical structure, searching and planning strategy, image-processing algorithm, and improvements in real missions are described in detail in this study.
机译:地震后或地震后评估中的快速搜索和救援响应往往非常困难。为了解决这个问题,我们根据相关工作,人工地震搜救工作,总结了搜救旋翼无人机系统的要求,并以此为指导进行研究。基于这些要求,进行了一系列研究和技术工作,以提出一种有效的SR-RUAV系统。为了帮助救援队快速找到感兴趣的地区,提出了一种融合低空统计图像处理方法的倒塌建筑物检测方法,可以通过及时发现倒塌建筑物来提高生存率。整个SR-RUAV系统在2008年至2010年的中国国家搜救训练基地(CNTBSR)中通过模拟地震响应实验进行了说明。2013年4月20日,中国庐山经历了一场灾难性地震(7.0级)。由于农村地区建筑物的分布,不可能通过地面搜索进行快速搜索和地震后评估。我们向中国国际搜寻和救援队(CISAR)提供了SR-RUAV,并准确检测了倒塌的建筑物,以在低空提供地面救援指导。根据从地震后实际任务中获得的经验教训,该系统在搜索/计划策略以及在不同环境中基于视觉的评估方面得到了显着改进。 SR-RUAV已被证明是适用且省时的。本研究详细描述了物理结构,搜索和规划策略,图像处理算法以及实际任务中的改进。

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