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Avionic system design Unmanned Aerial Vehicle for disaster area monitoring

机译:航空电子系统设计用于灾区监视的无人机

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Unmanned Aerial Vehicle (UAV) Technology grew very fast. UAV is an aircraft that do not require cabin crew or a crew to operate it. Many developing countries were competing to develop this technology in a particular mission. UAV was originally developed for military purpose. Nowadays, it developed for civil purposes, such as for disaster area monitoring. Disaster area monitoring with an UAV is well suited for dangerous area that could not be reached safely. This research intends to design and discuss avionics system in an UAV that is used for disaster area monitoring mission. The first step of this research was identifying priority avionic system components for the UAV. The avionic components then were interfaced with autopilot system of the UAV. The avionic system was then installed in the UAV airframe. Performance of the avionic designed was tested with flight test. Wireless telemetry with Ground Control Station (GCS) was used for communication with UAV. It displayed real-time data on the UAVs such as the position, ground speed, altitude, airspeed, navigation and could be served as a ¿¿¿virtual cockpit¿¿¿, by showing many of the same instruments as a real plane. Ground Control Station (GCS) is able to be used to control a UAV in flight, uploading new mission commands and setting parameters. It also used to monitor the live video streaming from the UAV's cameras. UAV flew by following the waypoint while taking video and photo. The obtained flight data shown that the UAV was able to track the given waypoint and it also able to fly in stable condition.
机译:无人机技术发展非常迅速。无人机是不需要机务人员或机组人员操作的飞机。许多发展中国家在特定任务中竞争开发该技术。无人机最初是为军事目的而开发的。如今,它是为民用目的而开发的,例如用于灾区监视。用无人机进行灾区监视非常适合无法安全到达的危险区域。本研究旨在设计和讨论用于灾区监视任务的无人机中的航空电子系统。这项研究的第一步是确定无人机的优先航空电子系统组件。然后将航空电子部件与无人机的自动驾驶系统连接。然后将航空电子系统安装在无人机机身中。设计的航空电子设备的性能已通过飞行测试进行了测试。地面控制站(GCS)进行的无线遥测用于与无人机进行通信。它通过显示许多与真实飞机相同的仪器,在无人机上显示诸如位置,地面速度,高度,空速,导航等实时数据,并且可以用作“虚拟驾驶舱”。地面控制站(GCS)可用于控制飞行中的无人机,上传新的任务命令和设置参数。它还用于监视来自无人机摄像机的实时视频流。无人机在拍摄视频和照片时跟随航路点飞行。获得的飞行数据表明,无人机能够跟踪给定的航路点,并且还能够在稳定的条件下飞行。

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