Design and construction of a UAV device with a fixed wing for the conditions of rescue services

Nikolas Michael Petrík, P. Pecho
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Abstract

The paper is focused on comprehensive design of an unmanned aerial vehicle with fixed wing, which would add efficiency to specific activities performed by rescue services. The current rapid development of unmanned aerial vehicles is slowly becoming part of many industries around the world. The aim of this paper is to design an unmanned aerial vehicle that could provide safe, reliable, and efficient operation. The overall design, construction, and installation of the proposed unmanned aerial vehicle should integrate several modern technologies. To make an ideal design of unmanned aerial vehicle it is required to possess the knowledge of current construction methods of additive manufacturing, understanding of legislation in operating conditions and, in addition to general knowledge of unmanned vehicles, also comprehensive skills in programming and configuration of autonomous control elements of autonomous unmanned systems. After the production of the unmanned aerial vehicle with fixed wing, very good technical properties were demonstrated during experimental ground tests. Achieved technical properties are comparable to those owned by the unmanned aerial vehicles that are currently on the market. The final design configuration using an infrared-sensitive optical device could perform activities such as: searching for missing persons in hard-to-reach and vast terrain or searching for forest fires.
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为救援服务条件设计和建造具有固定翼的无人机装置
本文重点研究了一种固定翼无人机的综合设计,它可以提高救援服务的具体活动效率。目前,无人机的快速发展正慢慢成为世界各地许多行业的一部分。本文的目的是设计一种能够提供安全、可靠和高效运行的无人机。无人机的总体设计、建造和安装应集成多种现代技术。要进行理想的无人机设计,需要掌握当前增材制造的施工方法,了解运行条件下的法规,除了掌握无人机的一般知识外,还需要掌握自主无人系统自主控制元件的编程和配置的综合技能。固定翼无人机生产完成后,在地面试验中表现出了很好的技术性能。实现的技术性能可与目前市场上的无人驾驶飞行器相媲美。最终的设计配置使用红外敏感光学装置,可以执行诸如:在难以到达和广阔的地形中搜索失踪人员或搜索森林火灾等活动。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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