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Open source computer-vision based guidance system for UAVs on-board decision making

机译:基于开源计算机视觉的无人机机载决策制导系统

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The use of UAVs for remote sensing tasks; e.g. agriculture, search and rescue is increasing. The ability for UAVs to autonomously find a target and perform on-board decision making, such as descending to a new altitude or landing next to a target is a desired capability. Computer-vision functionality allows the Unmanned Aerial Vehicle (UAV) to follow a designated flight plan, detect an object of interest, and change its planned path. In this paper we describe a low cost and an open source system where all image processing is achieved on-board the UAV using a Raspberry Pi 2 microprocessor interfaced with a camera. The Raspberry Pi and the autopilot are physically connected through serial and communicate via MAVProxy. The Raspberry Pi continuously monitors the flight path in real time through USB camera module. The algorithm checks whether the target is captured or not. If the target is detected, the position of the object in frame is represented in Cartesian coordinates and converted into estimate GPS coordinates. In parallel, the autopilot receives the target location approximate GPS and makes a decision to guide the UAV to a new location. This system also has potential uses in the field of Precision Agriculture, plant pest detection and disease outbreaks which cause detrimental financial damage to crop yields if not detected early on. Results show the algorithm is accurate to detect 99% of object of interest and the UAV is capable of navigation and doing on-board decision making.
机译:将无人机用于遥感任务;例如农业,搜救行动正在增加。无人机具有自主找到目标并执行机上决策(例如下降到新高度或紧挨目标降落)的能力是理想的能力。计算机视觉功能允许无人机(UAV)遵循指定的飞行计划,检测感兴趣的对象并更改其计划路径。在本文中,我们描述了一种低成本和开放源代码的系统,该系统使用Raspberry Pi 2微处理器和相机接口在无人机上完成所有图像处理。 Raspberry Pi和自动驾驶仪通过串行物理连接,并通过MAVProxy进行通信。 Raspberry Pi通过USB摄像头模块连续实时监控飞行路线。该算法检查目标是否被捕获。如果检测到目标,则对象在帧中的位置用笛卡尔坐标表示,并转换为估计GPS坐标。同时,自动驾驶仪接收目标位置的近似GPS,并做出决定将无人机引导到新位置。该系统在精密农业,植物病虫害检测和疾病暴发等领域也有潜在用途,如果不及早发现,会对农作物的产量造成不利的财务损失。结果表明,该算法可以准确地检测出99%的目标物体,而无人机则具有导航能力和机载决策能力。

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