PERANCANGAN ALAT MONITORING KONDISI LINGKUNGAN DAN PREDIKSI CUACA BERTENAGA SURYA BERBASIS MIKROKONTROLER MENGGUNAKAN METODE FUZZY LOGIC

Athalarvin Nabilfathin Arvin, Rusindiyanto
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Abstract

Indonesia is an agricultural country where agriculture plays an important role in the overall national economy. This happens because agricultural and plantation products are influenced by environmental factors and supervision. This study aims to design a tool for monitoring environmental conditions and weather predictions with solar power as well as developing an IoT that connects weather monitoring and prediction tools with smartphones. So it is hoped that from the results of this study, a solar-powered monitoring and weather prediction tool can be made that can send the latest information related to environmental conditions to smartphones owned by farmers and other users. This research is using experimental method. Data processing carried out is fuzzification and defuzzification. Fuzzi inference according to Sugeno which is represented in the form of IF-THEN, where the system output is a constant or a linear equation. The results of this study found that the design of the environmental condition monitoring tool was successful in displaying data with an accuracy rate of 0.34% for the temperature variable, 0.19% for the humidity variable, and 0.83% for the irradiation variable, then the solar panel was able to charge power bank to generate sufficient electrical power for the device to operate continuously well in conditions such as in a research environment, as well as the IoT software developed to successfully display all data captured by the monitoring tool properly
利用模糊逻辑的方法,设计环境条件监测和以太阳能为基础的天气预报
印度尼西亚是一个农业国家,农业在整个国民经济中起着重要作用。这是因为农林业产品受到环境因素和监管的影响。此次研究的目的是设计利用太阳能监测环境状况和天气预报的工具,并开发将天气监测预报工具与智能手机连接起来的物联网。因此,希望通过这项研究的结果,可以制造出一种太阳能监测和天气预报工具,可以将有关环境状况的最新信息发送到农民和其他用户拥有的智能手机上。本研究采用实验方法。对数据进行了模糊化和去模糊化处理。根据Sugeno的Fuzzi推理,它以IF-THEN的形式表示,其中系统输出是常数或线性方程。本研究结果发现,环境状态监测工具设计成功,温度变量、湿度变量和辐照变量的数据显示准确率分别为0.34%、0.19%和0.83%,然后太阳能电池板可以为充电宝充电,产生足够的电力,使设备在研究环境等条件下连续良好运行。以及为成功显示监控工具捕获的所有数据而开发的物联网软件
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