DEVELOPMENT AND IMPLEMENTATION OF AN AUTOMATED PILOT SYSTEM FOR A FIXED-WING TWIN-ENGINE AIRPLANE UAV

G. Buican, S. Zaharia, onut Stelian Pascariu, L. Chicoş, C. Lancea, M. Pop, V. Stamate
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Abstract

When controlling a UAV, we have to rely on the line of site of the operator and aft wards on the communication with the ground control station. This implies expensive equipment used in communication, a skilled operator and a UAV with low autonomy. In order to address these issues an automated piloting system needs to be implemented thus offering the needed autonomy to the UAV. An automated pilot can also stabilize the aircraft and allow for the control of the UAV to be done by people without intensive training or special skills. In the present paper we present the development and implementation of such a system, built on Cube Orange flight controller, and implemented on a fixed-wing UAV with twin-engines, fabricated using additive manufacture technologies.
一种用于固定翼双发飞机无人机的自动驾驶系统的发展和实施
在对无人机进行控制时,必须依靠操作人员的位置线和后方与地面控制站的通信。这意味着在通信中使用昂贵的设备,熟练的操作员和低自主性的无人机。为了解决这些问题,需要实现自动驾驶系统,从而为无人机提供所需的自主性。自动飞行员也可以稳定飞机,并允许无人机的控制由没有密集训练或特殊技能的人来完成。在本文中,我们介绍了这样一个系统的开发和实现,该系统建立在Cube Orange飞行控制器上,并在使用增材制造技术制造的双引擎固定翼无人机上实现。
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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