An LLMS Remotely Controlled Experiment for Smart Hydro Energy Storage and Irrigation System Powered by Photo-Voltaic Array and IoT

Helmy M. El Zoghby, H. A. H. Hassan Hosny, M. M. Elmesalawy, Ahmed M. Abd El-Haleem
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Abstract

Many students all over the world have faced some educational issues due to the Covid-19 epidemic. As a consequence, many educational institutes focused on shifting to an E-learning system. This paper introduces a design and implementation steps of a remotely controlled experiment representing a smart hydro energy storage and irrigation system with monitoring capability using photovoltaic power and the Internet of Things (IoT). The experiment is running within the newly proposed Laboratory Learning Management System (LLMS). The remotely controlled experiment is a smart hydro energy storage and irrigation system, where the stored water during the daytime is used at night for smart irrigation of three different types of plants based on the moisture and temperature, in addition to the amount of water that the user sets for every area. In this experiment, during the daytime, the utilities are feeding from the solar panel and battery, but at night, the utilities are feeding from the battery or the hydro turbine that converts the water potential energy to electric energy. The overall Experiment is controlled using IoT sensors and relays which are connected and driven by the parameters that the user sets and can be communicated with the system using the Internet which allows the system to be proactive and take the needed decision in the right time. The main contribution of this system’s experiment is the pumping of underground water in irrigation using a renewable and clean energy source, in addition to controlling the systems using IoT through the proposed LLMS.
以光伏阵列和物联网为动力的智能水力储能和灌溉系统的 LLMS 远程控制实验
由于 Covid-19 的流行,世界各地的许多学生都面临着一些教育问题。因此,许多教育机构将重点转向电子学习系统。本文介绍了一个远程控制实验的设计和实施步骤,该实验代表了一个利用光伏发电和物联网(IoT)进行监控的智能水能储存和灌溉系统。该实验在新提出的实验室学习管理系统(LLMS)中运行。该远程控制实验是一个智能水能储存和灌溉系统,白天储存的水在夜间根据湿度和温度,以及用户为每个区域设定的水量,用于对三种不同类型的植物进行智能灌溉。在该实验中,白天的水电供应来自太阳能电池板和蓄电池,而晚上的水电供应则来自蓄电池或将水势能转化为电能的水轮机。整个实验使用物联网传感器和继电器进行控制,这些传感器和继电器根据用户设置的参数进行连接和驱动,并可通过互联网与系统进行通信,从而使系统能够主动出击,适时做出所需的决策。该系统实验的主要贡献是利用可再生清洁能源在灌溉中抽取地下水,此外还通过提议的 LLMS 使用物联网控制系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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