一种具有精准农业气象监测系统的智能多用途机器人

Shamim Forhad, M. Hossen, Iraj Ahmed Ahsan, Sadman Saifee, Kazi Naimul Islam Nabeen, Md. Riazat Kabir Shuvo
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引用次数: 0

摘要

本文研究了气象监测系统的最新进展及其与精准农业中自主机器人的集成。本研究的基本目的是评估现代农业中使用的各种系统的有效性,如浇水、农药喷洒、播种、障碍物检测和土壤分析。因此,引进内置气象监测系统的智能机器人“AGRENOBOT”是精准农业的重大突破。该机器人在播种和喷洒农药方面效率很高,大大减少了对人力的需求,同时最大限度地减少了农药的负面影响。研究结果表明,机器人可以工作30分钟左右,播种精度达到92%,优于人工。利用传感器测量气象变量和线性回归模型预测降雨,还开发了一个网络界面来实时监测播种、抽水和天气状况。这项研究的结论是,AGRENOBOT是解决农业行业挑战的一个很有前途的解决方案,因为它有可能提高作物产量并满足更多粮食生产的需求。因此,这项研究鼓励了精准农业的进一步研究和发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Intelligent Versatile Robot with Weather Monitoring System for Precision Agriculture
This research paper studies the latest advancements in weather monitoring systems and their integration with autonomous robots in precision agriculture. The fundamental purpose of this research is to appraise the effectiveness of diverse systems utilized in modern agriculture, such as watering, pesticide spraying, seeding, obstacle detection, and soil analysis. In this regard, the AGRENOBOT, an intelligent robot equipped with an inbuilt weather monitoring system, is introduced as a significant breakthrough in precision agriculture. The robot is highly efficient in planting seeds and spraying pesticides, significantly reducing the need for human labor while minimizing the negative impacts of pesticides. The research findings show that the robot can work for about 30 minutes and can plant seeds with 92% precision, which is better than human labor. A web interface is also developed to monitor the seeding, pumping, and weather status in real-time, utilizing sensors to measure meteorological variables and a Linear Regression model to predict rainfall. This study concludes that the AGRENOBOT is an up-and-coming solution to the agricultural industry’s challenges, as it has the potential to increase crop yields and address the need for more food production. Consequently, this study encourages further research and development in precision agriculture.
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