Energy and Operations Optimization for Effective Greenhouse Management

K. I. Prihan Nimsara, J. Bodaragama, K. A. Roshan Maduwantha, S. Fernando
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Abstract

IoT technology-based process automation that can be applied to a greenhouse leads to making condition management and status monitoring more robust while leading to saving energy and resources. The proposed system which is based on IoT technology and MQTT protocol can set optimal growth conditions for plant and seed growth within the greenhouse. The sensor-based inputs are to be transformed into the processed values based on the defined logic and the standard benchmarks gathered from the local agricultural authorities. The key areas of condition monitoring to be done via temperature, humidity, soil moisture, and lighting can ultimately yield an increased harvest having supported both the plant and seeds-based implementations for multiple types of plants. One of the most important factors to consider is that the farmers can have energy savings through the proposed solution by controlling the actuators in an optimal manner and reducing manual intervention by a considerable amount. The excess usage of electricity by lights and cooling fan usage in the greenhouse can be controlled with real-time data tracking and better analytics. The use of water can be properly maintained for the plants by putting only the required amount will make the soil wet and spraying the required amount to air will make better humidity control. Thus, the real-time condition-based controlling of the actuators leads to making the greenhouse operations more optimal and better utilization of resources and energy which ultimately results in financial benefits for the greenhouse owner. Based on the evaluated power consumption of the greenhouse power usage before and after the system was installed, the newly introduced system can save energy by having optimal control of actuators by performing algorithmic calculations to meet only the required level of weather conditions. This is to be proven experimentally by implementing the proposed system for a defined period of time under the monitoring of energy usage.
有效温室管理的能源和操作优化
基于物联网技术的过程自动化可以应用于温室,从而使状态管理和状态监控更加强大,同时节省能源和资源。该系统基于物联网技术和MQTT协议,可以为温室内的植物和种子生长设置最佳生长条件。基于传感器的输入将根据定义的逻辑和从当地农业当局收集的标准基准转换为处理后的值。通过温度、湿度、土壤湿度和照明进行状态监测的关键领域最终可以增加收成,并支持多种类型植物的基于植物和种子的实施。需要考虑的最重要的因素之一是,农民可以通过提出的解决方案以最佳方式控制执行器并减少大量的人工干预,从而节省能源。通过实时数据跟踪和更好的分析,可以控制温室中灯光和冷却风扇的过度用电。水的使用可以适当地为植物保持,只放所需的量会使土壤湿润,并向空气中喷洒所需的量会更好地控制湿度。因此,对执行器的实时状态控制可以使温室的运行更加优化,更好地利用资源和能源,最终为温室所有者带来经济效益。根据系统安装前后对温室用电量的评估,新引入的系统可以通过算法计算来优化执行器的控制,以满足所需的天气条件,从而节省能源。在监测能源使用情况的情况下,在一段规定的时间内实施拟议的系统,以实验方式证明这一点。
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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