基于单片机的农作农业系统设计与开发

Muhammad Johan Mad Ali, Abdul Malik Mohd Ali, M. Reyasudin Basir Khan
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摘要

目前,传统农业正在利用物联网技术向智慧农业转型。正在开发一个农业服务平台,以帮助进行环境监测和改善农业管理。各种气候条件参数的监测对农业至关重要,以确保最佳的生长条件。作物生产调节和气候变化对农业和粮食生产产生负面影响,原因是降雨过多、温度变化和其他相关的环境变化。不同类型的植物都有自己对施肥和水的需求,而施肥管理不善将导致作物不健康并缩短其寿命。本研究的目标是设计和开发一个基于传感器和单片机的工厂管理系统。系统的输入包括pH值、温度和土壤湿度以及实时时钟模块。该系统使用LoRa进行数据传输,将允许数据传输到最远1公里的距离。该系统将优化植物浇水,从而更有效地利用水。此外,该系统将具有图形用户界面(GUI),允许用户为用户提供植物浇水时间表。该系统经过多次实验验证,取得了良好的效果。该系统可用于室内和室外植物
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and Development of Microcontroller Based Agroponic Agriculture System
Currently, the traditional agriculture is being transformed into smart agriculture using the Internet of Things (IoT) technology. An agriculture service platform is being developed to help with environmental monitoring and to improve agricultural management. Various climate condition parameters are vital to be monitored for agriculture for ensuring optimal growth conditions. The crop production regulation, and climate change has negative impact on agriculture and food production due to excess rainfall, temperature changes, and other associated environmental variations. Different type of plants has its own need of fertilization and water where poor management of water and fertilization will lead to unhealthy crops and shorten their lifespan. The goal of this study is to design and develop a plant management system based on sensors and microcontroller. The input of the system includes pH, temperature, and soil moisture alongside real-time clock module. The system uses LoRa for data transmission that will allow the data to be transmitted up to 1 km distance. The system will optimize the plant watering leading to more efficient water usage. Moreover, this system will have a Graphical User Interface (GUI) that will allow user to provide plant watering schedule for the user. This system has been successfully tested based on several experiments. This system can be used for both indoor and outdoor plants
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