无线传感器网络在温室网络服务器上实现空间温度和土壤湿度自动化

Yogha Arieka Adnantha, W. Kusuma
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引用次数: 6

摘要

随着印度尼西亚人口的增加,随之而来的是工业部门城市化率的提高,当然会影响到农业部门的减少,从而增加粮食需求。温室是解决这一问题的一种方法,利用温室可以控制环境,也可以保护植物不受外界干扰。在这种情况下,仍然需要手动测量温度或给植物浇水。本研究利用无线传感器网络(WSN)技术,开发了一套温室室内温度和土壤湿度监测与自动化系统。该系统由1个节点温湿度室和1个温室土壤湿度节点组成,每个节点由arduino uno作为微控制器,ESP8266作为Wi-Fi模块,传感器和继电器组成。监测结果和自动化数据将通过无线发送到网络服务器,使温室农民更容易监控他们的温室。这项研究的结果可以发现,系统能够监控和执行自动控制温度的降低,当温度达到超过28 c和能够增加土壤水分自动土壤水分小于40%时,除了利用ESP8266数据监控和自动化的结果可以发送到web服务器,但基于测试结果数据传输的最大距离是50米的节点访问点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Implementasi Wireless Sensor Network Untuk Otomatisasi Suhu Ruang Dan Kelembaban Tanah Pada Greenhouse Berbasis Web Server
Along with the increasing population of Indonesia which is also followed by the increasing rate of urbanization in the industrial sector, certainly affects the reduced agricultural sector to increase food needs. Greenhouse can be one solution to solve this problem, by utilize greenhouse our enviroment can be controlled and also protect the plants from outside interference. During this condition is still done manually both to measure the temperature or watering the plants. In this study the author developed a system to monitor and automate room temperature and soil moisture in greenhouse by utilizing Wireless Sensor Network (WSN) technology. The system consists of 1 node temperature and humidity chamber and 1 node of greenhouse soil moisture where each node is composed of arduino uno as its microcontroller, ESP8266 as Wi-Fi module, sensor, and relay. The results of monitoring and automation data will be sent to the web server by wireless, to make it easier for greenhouse farmers and monitoring their greenhouse. The results of this study can be found that the system is able to monitor and perform automatic control of temperature decrease, when the temperature reaches more than 28C and able to increase soil moisture automatically when the soil moisture is less than 40%, in addition by using ESP8266 data monitoring and automation results can be sent to the web server but based on the test results obtained that the maximum range of data transmission is 50 meters from the node to the access point.
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