利用物联网实现自动化灌溉、水和能源效率的智能农业

IF 5.7 Q1 AGRICULTURAL ENGINEERING
Subir Gupta , Subrata Chowdhury , Ramya Govindaraj , Kassian T.T. Amesho , Sumarlin Shangdiar , Timoteus Kadhila , Sioni Iikela
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引用次数: 0

摘要

本研究提出了一种创新的智能农业系统,该系统集成了物联网(IoT)技术、预测算法和自动化控制机制,以优化灌溉和提高资源效率。提出的解决方案利用连接到基于arduino的微控制器的土壤湿度、温度和湿度传感器,根据实时数据自动灌溉。农民可以通过移动设备远程监控和管理灌溉计划,确保精度和便利性。预测算法结合历史和实时数据来预测灌溉需求,确保只在必要时浇水。田间试验表明,与传统灌溉方法相比,该方法的用水量减少了30%,同时保持了最佳的土壤湿度水平。此外,该系统显著降低了人工和能源成本,提高了作业效率。通过解决水资源短缺问题和促进可持续资源利用,这一智能系统有可能提高作物产量,减少温室气体排放,并推进生态农业实践。在水资源有限的地区,这项技术的实施是朝着可持续农业迈出的重要一步,显示出广泛采用的巨大潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Smart agriculture using IoT for automated irrigation, water and energy efficiency
This study presents an innovative smart agriculture system that integrates Internet of Things (IoT) technologies, predictive algorithms, and automated control mechanisms to optimize irrigation and enhance resource efficiency. The proposed solution leverages soil moisture, temperature, and humidity sensors connected to an Arduino-based microcontroller to automate irrigation based on real-time data. Farmers can remotely monitor and manage irrigation schedules through mobile devices, ensuring precision and convenience. The predictive algorithm combines historical and real-time data to forecast irrigation requirements, ensuring water is applied only when necessary. Field trials demonstrated a 30 % reduction in water usage compared to traditional irrigation methods, while maintaining optimal soil moisture levels. Additionally, the system significantly reduced labor and energy costs, contributing to operational efficiency. By addressing water scarcity and promoting sustainable resource utilization, this smart system has the potential to improve crop yields, reduce greenhouse gas emissions, and advance ecological farming practices. In regions with limited water resources, the implementation of this technology represents a significant step toward sustainable agriculture, showcasing immense potential for broader adoption.
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CiteScore
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