Department of Computer Science Engineering, SIGL-Lab, ENSA, University Abdelmalek Essaadi, Tetouan 93153, Morocco.
Department of Electronic Engineering, ETSE, University Valencia, Av. Universitat, 46100 Burjassot, Spain.
Sensors (Basel). 2023 Mar 2;23(5):2725. doi: 10.3390/s23052725.
The increasing challenges of agricultural processes and the growing demand for food globally are driving the industrial agriculture sector to adopt the concept of 'smart farming'. Smart farming systems, with their real-time management and high level of automation, can greatly improve productivity, food safety, and efficiency in the agri-food supply chain. This paper presents a customized smart farming system that uses a low-cost, low-power, and wide-range wireless sensor network based on Internet of Things (IoT) and Long Range (LoRa) technologies. In this system, LoRa connectivity is integrated with existing Programmable Logic Controllers (PLCs), which are commonly used in industry and farming to control multiple processes, devices, and machinery through the Simatic IOT2040. The system also includes a newly developed web-based monitoring application hosted on a cloud server, which processes data collected from the farm environment and allows for remote visualization and control of all connected devices. A Telegram bot is included for automated communication with users through this mobile messaging app. The proposed network structure has been tested, and the path loss in the wireless LoRa is evaluated.
农业过程日益面临挑战,全球对粮食的需求不断增长,这促使工业农业领域采用“智能农业”概念。智能农业系统具有实时管理和高度自动化的特点,可以极大地提高农业食品供应链的生产力、食品安全和效率。本文提出了一种定制的智能农业系统,该系统使用基于物联网 (IoT) 和远程 (LoRa) 技术的低成本、低功耗、广范围无线传感器网络。在该系统中,LoRa 连接与现有的可编程逻辑控制器 (PLC) 集成,PLC 通常用于工业和农业领域,通过 Simatic IOT2040 控制多个过程、设备和机械。该系统还包括一个新开发的基于网络的监控应用程序,该应用程序托管在云服务器上,处理从农场环境中收集的数据,并允许远程可视化和控制所有连接的设备。还包括一个通过该移动消息应用程序与用户进行自动通信的 Telegram 机器人。已经对所提出的网络结构进行了测试,并评估了无线 LoRa 的路径损耗。