Efficient and Cost-effective Drone – NDVI system for Precision Farming

Sheth Harsh, D. Singh, Shraddha Pathak
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引用次数: 6

Abstract

The motive of the project is to develop a under budget system that automates the process of farming by interfacing cutting edge technologies like Drones and ‘NDVI’ to improve the level of productivity in Agriculture. Humans and satellites have a hard time beating a drone’s eye for detail in scanning farming systems from above. Flying below the clouds, collecting and sending images in almost real-time, unmanned aerial vehicles (UAVs) gained ground quickly in agriculture in the last decade as part of so-called precision agriculture. Among their wide range of applications, they can help farmers check crops’ health, track livestock, plan fertilization, assess damages, and map fields at high-resolution. But all this comes with a cost. Currently the models of drones used for such applications cost extensively higher, which makes it unfeasible for the small farmers, especially in India. The projects aim on designing a drone system that can work on both autonomous as well as manual mode and perform mapping, inspecting and spraying processes with efficiency accuracy and considerably good speed which can help boosting the profits of the farmers with large as well as small agricultural lands. As there are lots of restrictions on Drone flight in India. The project aims to follow and implements all the norms stated by the government. (e.g., Permission before flight). The project aims towards overcoming all the above-mentioned problems by automating the procedure.
高效和经济的无人机-精确农业NDVI系统
该项目的动机是开发一个预算下的系统,通过连接无人机和“NDVI”等尖端技术,使农业过程自动化,以提高农业生产力水平。在从高空扫描农业系统的细节方面,人类和卫星很难击败无人机的眼睛。无人机在云层下飞行,几乎实时地收集和发送图像,在过去十年中,作为所谓的精准农业的一部分,无人机在农业领域迅速取得了进展。在其广泛的应用中,它们可以帮助农民检查作物的健康状况,跟踪牲畜,计划施肥,评估损害,并以高分辨率绘制田地地图。但这一切都是有代价的。目前,用于此类应用的无人机型号成本要高得多,这使得它对小农来说不可行,尤其是在印度。这些项目旨在设计一种无人机系统,既可以在自动模式下工作,也可以在手动模式下工作,并以高效、准确和相当快的速度执行测绘、检查和喷洒过程,这有助于提高拥有大片农田和小块农田的农民的利润。因为印度对无人机飞行有很多限制。该项目旨在遵循并实施政府制定的所有规范。(例如,飞行前的许可)。该项目旨在通过自动化程序来克服上述所有问题。
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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