Algoritms for determining the attitude position of an unmanned aerial vehicle relative to the landing platform by using computer vision

T. Gainutdinova, S. V. Novikova, V. G. Gainutdinov, M. Trusfus, V. M. Litvin
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Abstract

Algorithms for determining the attitude position of an aircraft or helicopter-type unmanned aerial vehicle relative to the landing platform with special optical marks are considered. An assessment is made of the possibility of calculating the angular position, height and distance to the landing platform in real time based on image processing by a separate on-board processor combined with a digital optical camera into a single measuring unit. The results of calculating the aircraft attitude relative to the landing platform moving along a program trajectory using computer vision algorithms are presented. Simulation of the process of recognizing optical marks on a moving platform from a moving aircraft confirmed that using a processor with a program for recognizing and identifying optical marks by using computer vision and algorithms for calculating the position of the aircraft relative to landing platforms can assuredly provide reliable information about the positioning of an unmanned aerial vehicle relative to the landing platform in real time and can be used in conjunction with other navigation aids (or independently) to ensure accurate landing of unmanned aircraft.
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利用计算机视觉确定无人飞行器相对于着陆平台的姿态位置的算法
考虑了利用特殊光学标记确定飞机或直升机型无人驾驶飞行器相对于着陆平台的姿态位置的算法。评估了通过一个独立的机载处理器结合一个数字光学摄像机,将图像处理与单一测量单元相结合,实时计算与着陆平台的角度位置、高度和距离的可能性。介绍了利用计算机视觉算法计算飞机相对于沿程序轨迹移动的着陆平台的姿态的结果。对从移动的飞机上识别移动平台上的光学标记的过程进行的模拟证实,使用带有计算机视觉识别和辨认光学标记程序的处理器和计算飞机相对于着陆平台位置的算法,一定能实时提供关于无人驾驶飞行器相对于着陆平台定位的可靠信息,并可与其他导航辅助设备结合使用(或单独使用),以确保无人驾驶飞机准确着陆。
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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