用于监视、安全和监控的太阳能自主六轴直升机

Fahad Hassan, M. Usman, Shahzaib Hamid, M. A. Usman, C. Politis, Gandeva Bayu Satrya
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引用次数: 2

摘要

由于机器自动化和人工智能(AI)的创新,监视和安全范例正在发生变化。无人机是针对难以进入或位于危险区域的高度重要区域进行监视而设计的。本文主要研究具有监视能力的六旋翼直升机的设计与制造。所设计的六旋翼直升机具有自主飞行和覆盖预定路径的能力,并发送视频信号,供地面基站,即PC和智能手机等观看,并且无人机完全能够自我控制飞行和基于太阳能的自供电机构。对于自我控制机制,我们的设计包括一个ArduPilot Mega (APM) 2.8版本的飞行控制器,其内置微控制器具有与GPS和惯性测量传感器单元接口的能力。在任务规划软件的帮助下,自动生成飞行路径。为了监视目的,六轴直升机上安装了一个摄像头,该摄像头将视频数据无线传输到地面站。该系统为监视和航空摄影等应用提供了一个非常灵活和通用的平台。它可用于政府机构,军事应用,救灾等。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Solar Powered Autonomous Hex-Copter for Surveillance, Security and Monitoring
Due to innovation in machine automation and artificial intelligence (AI), surveillance and security paradigms are changing. The unmanned aerial vehicles are designed for surveillance of high importance area, that are either difficult to access or are located in dangerous zones. This paper focuses on design and construction of hex-copter with surveillance capabilities. The designed hex-copter has the ability to fly autonomously and cover the predefined path as well as send the video signals which are to be viewed on the ground base station, i.e., PC and smart phones etc., also the UAV is fully capable of self-controlled flight and solar based self-powering mechanism. For self-control mechanism, our design includes an ArduPilot Mega (APM) Version 2.8 flight controller having an in-built microcontroller with capability of interfacing with GPS and Inertial measurement sensor unit. The auto-flight path is generated with the help of mission planner software. For the surveillance purpose, a camera is attached with the hex-copter that transmits video data wirelessly to the ground station. This system provides an extremely maneuverable and versatile platform for applications like surveillance and aerial photography. It can be used for government agencies, military applications, and disaster relief etc.
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