Smart Crop Cultivation Monitoring System by Using IoT

K. Bounnady, P. Sibounnavong, Khampasith Chanthavong, Savath Saypadith
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引用次数: 7

Abstract

Agricultural is an important field of economic development in Lao. Farming needs to be adapted in order to be able to satisfy consumers, so using IoT (Internet of Things) to help in this field is one of the preferred alternatives in the present. In this research, the system monitoring of soil moisture, temperature and water control has been proposed by using NodeMCU ESP8266, sensors and Cloud Computing. To study the effects of growth rate, producing rate, water saving rate of crop planting the three methods such as traditional farm, the greenhouse by using a timer to control soil moisture and the greenhouse by using sensors to automatically control soil moisture was set up and experimented on the melon farm. After that, we have kept track and record all statistics of each part of the plants such as height, its flower, and fruit every week for ten weeks, then analyse it on average in percentage (%) by using Excel to gather information. The results of all experiments compared with method using sensor to automatically control soil moisture, the result as following: grown rate is better than traditional farm 41.2% and better than a timer to control soil moisture is 23.1%; productivity is getting more than traditional farm 70% and get more than a timer to control soil moisture is 12.1%; water saving better than traditional farm 20.9% and better than a timer to control soil moisture is 5.5%.
基于物联网的智能作物种植监控系统
农业是老挝经济发展的重要领域。为了能够满足消费者,农业需要进行调整,因此使用物联网(IoT)在这一领域提供帮助是目前首选的替代方案之一。在本研究中,提出了基于NodeMCU ESP8266、传感器和云计算的土壤湿度、温度和水分控制系统。为研究作物种植对生长率、产出率、节水率的影响,建立了传统农场、采用定时器控制土壤湿度的温室和采用传感器自动控制土壤湿度的温室三种种植方式,并在甜瓜农场进行了试验。之后,我们连续十周每周跟踪记录植株各部分的所有数据,如高度、花朵、果实等,然后用Excel平均以百分比(%)进行分析,收集信息。各试验结果与采用传感器自动控制土壤水分的方法进行比较,结果表明:生长率优于传统农场41.2%,优于定时器控制土壤水分23.1%;生产效率比传统农场高70%,控制土壤湿度的时间比传统农场高12.1%;节水优于传统农场20.9%,优于定时器控制土壤水分5.5%。
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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