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Remote-Control System for Greenhouse Based on Open Source Hardware

机译:基于开源硬件的温室远程控制系统

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With the development of technologies such as the Internet of Things and Big Data, agriculture is entering the digital age. Modern information technology and intelligent equipment are the development direction of agriculture. In this paper, a remote-control system for greenhouse environment was developed based on Raspberry Pi, MySQL and Android. The system consists of a greenhouse control system (subsystem A), an environment monitoring system (subsystem B), a MySQL remote database (subsystem C), and an Android monitoring software (subsystem D). The subsystem A is used to implement automatic fertigation and collect data from subsystem B, which will be uploaded to cloud server database (subsystem C). The subsystem B is used to monitor the environmental parameters in the greenhouse such as air temperature/humidity, soil temperature/humidity etc. The subsystem C is used for storage of greenhouse environment data and communication between subsystem B and subsystem D. The subsystem D is used for data visualization including real-time display, storage and analysis of greenhouse environmental data, and remote control of fertigation system including the EC/pH control of the fertigation solution, irrigation scheduling, and fertigation settings. A proportional-integral-derivative (PID) control algorithm is used for the fertigation process of the subsystem A. The low-power LoRa technology is used for subsystem B to achieve low-power long-distance data transmission, which is especially suitable to greenhouses. All monitoring settings can be operated remotely by users.
机译:随着诸如事物互联网和大数据等技术的发展,农业正在进入数字时代。现代信息技术和智能设备是农业的发展方向。本文基于Raspberry PI,MySQL和Android开发了一种用于温室环境的远程控制系统。该系统由温室控制系统(子系统A),环境监测系统(子系统B),MySQL远程数据库(子系统C)和Android监控软件(子系统D)组成。子系统A用于实现自动培养并从子系统B收集数据,这将被上传到云服务器数据库(子系统C)。子系统B用于监测温室中的环境参数,如空气温度/湿度,土壤温度/湿度等。子系统C用于存储温室环境数据和子系统B和子系统D之间的通信。子系统D是用于数据可视化,包括实时显示,储存和分析温室环境数据,远程控制灌溉系统,包括EC / pH控制灌溉解决方案,灌溉调度和培养环境。比例积分衍生物(PID)控制算法用于子系统A的灌溉过程。低功耗LORA技术用于子系统B,实现低功率长距离数据传输,这尤其适用于温室。所有监控设置都可以由用户远程操作。

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