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Development of a Fixed Wing Unmanned Aerial Vehicle (UAV) for Disaster Area Monitoring and Mapping

机译:固定翼无人飞行器(UAV)的开发,用于灾区监测和制图

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摘要

The development of remote sensing technology offers the ability to perform real-time delivery of aerial video and images. A precise disaster map allows a disaster management to be done quickly and accurately. This paper discusses how a fixed wing UAV can perform aerial monitoring and mapping of disaster area to produce a disaster map. This research was conducted using a flying wing, autopilot, digital camera, and data processing software. The research starts with determining the airframe and the avionic system then determine waypoints. The UAV flies according to the given waypoints while taking video and photo. The video is transmitted to the Ground Control Station (GCS) so that an operator in the ground can monitor the area condition in real time. After obtaining data, then it is processed to obtain a disaster map. The results of this research are: a fixed wing UAV that can monitor disaster area and send real-time video and photos, a GCS equipped with image processing software, and a mosaic map. This UAV used a flying wing that has 3 kg empty weight, 2.2 m wingspan, and can fly for 12-15 minutes. This UAV was also used for a mission at Parangtritis coast in the southern part of Yogyakarta with flight altitude of 150 m, average speed of 15 m/s, and length of way point of around 5 km in around 6 minutes. A mosaic map with area of around 300 m x 1500 m was also obtained. Interpretation of the mosaic led to some conclusions including: lack of evacuation routes, residential area which faces high risk of tsunami, and lack of green zone around the shore line.
机译:遥感技术的发展提供了执行航空视频和图像的实时传递的能力。精确的灾难图可快速准确地进行灾难管理。本文讨论了固定翼无人机如何对灾区进行空中监视和制图,以生成灾害图。这项研究是使用机翼,自动驾驶仪,数码相机和数据处理软件进行的。研究从确定机身和航空电子系统开始,然后确定航路点。无人机在拍摄视频和照片时会根据给定的航路点飞行。视频被传输到地面控制站(GCS),以便地面操作人员可以实时监控区域状况。获取数据后,将其进行处理以获取灾难地图。这项研究的结果是:可以监视灾区并发送实时视频和照片的固定翼无人机,配备有图像处理软件的GCS和马赛克地图。该无人机使用的飞行机翼的空重为3千克,翼展为2.2 m,可以飞行12至15分钟。该无人机还用于在日惹南部的Parangtritis海岸执行任务,飞行高度为150 m,平均速度为15 m / s,航点长度约为6分钟,约为5 km。还获得了面积约为300 m x 1500 m的镶嵌图。对马赛克的解释导致一些结论,包括:疏散路线的缺乏,面临海啸高风险的居住区以及海岸线周围没有绿化带。

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