Artificial landmark design and detection using hierarchy information for UAV localization and landing

Wen Fei, Zhuo Su, C. Zhou
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引用次数: 2

Abstract

Localization and landing are of fundamental importance for Unmanned Aerial Vehicles (UAVs), and with the research on compute vision information processing, artificial landmark detection, a more efficient and accurate method, becomes a hot topic. In this paper, in order to provide sufficient information for localization, we design an artificial landmark with an annulus and some circles inside with specific positions and colors. We firstly use color and hierarchy information to find possible patter, then calculate its cross-ratio to check this pattern, localize our UAV at last. To prove our landmark and detection-recognition algorithm, two kinds of experiments are conducted and the results demonstrate our feasibility and accuracy. One is putting our landmark on random backgrounds to imitate complex environment, another is on real environments with different projection and distance. With those experimental results, we get the conclusion that our landmark and algorithm are robust and feasibility under various environments.
基于层次信息的无人机定位着陆人工地标设计与检测
定位与着陆对无人机至关重要,随着计算机视觉信息处理技术的研究,一种更高效、更准确的人工地标检测方法成为研究热点。为了给定位提供足够的信息,我们设计了一个人造地标,其中有一个环和一些圆圈,其中有特定的位置和颜色。首先利用颜色和层次信息寻找可能的模式,然后计算其交叉比对该模式进行检验,最后对无人机进行定位。为了验证我们的地标和检测识别算法,进行了两类实验,结果验证了我们的可行性和准确性。一种是将我们的地标放置在随机背景上模拟复杂环境,另一种是放置在不同投影和距离的真实环境上。实验结果表明,我们的地标和算法在各种环境下都具有鲁棒性和可行性。
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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