Sistem Pengering Daun Kelor Berbasis Internet of Things dan Artificial Intteligence

I wayan Sudiarsa, Putu Sugiartawan, I Gede Iwan Sudipa, Ni Made Maharianingsih, I Kadek Adiana Putra
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Abstract

Drying Moringa leaves is needed to reduce the water content so that the Moringa leaves become fresh and can be used for the following process. Drying Moringa leaves to change the water content from 80% to 9.2% requires ideal heating conditions because the heating speed must not damage the nutritional content in the leaves. Developing an existing drying system using IoT to monitor humidity and temperature to increase the drought stability of the Moringa leaves produced. By using IoT, it is hoped that drying conditions can be watched from anywhere and recorded so that if undesirable things happen, it will be easier to track the history of the drying process that has taken place. This system is also connected to a recommendation system using an Artificial Neural Network (ANN). This system will provide recommendations for the best conditions for Moringa flour production because various external factors influence the drying of Moringa leaves. Utilization of the ANN model can recognize data patterns in seasonal time series. The results of implementing the Moringa leaf drying machine can reduce the time by 120 minutes faster than the previous tool
以物联网和人工智能为基础的 Kelor 守护系统
干燥辣木叶是为了减少水分含量,使辣木叶变得新鲜,可以用于下面的过程。烘干辣木叶,使其含水量从80%提高到9.2%,需要理想的加热条件,因为加热速度不能破坏辣木叶中的营养成分。利用物联网开发现有的干燥系统来监测湿度和温度,以提高所生产的辣木叶的干旱稳定性。通过使用物联网,希望可以从任何地方观察并记录干燥条件,以便在发生不良事件时更容易跟踪已经发生的干燥过程的历史。该系统还使用人工神经网络(ANN)连接到推荐系统。该系统将为辣木粉的最佳生产条件提供建议,因为各种外部因素会影响辣木叶的干燥。利用人工神经网络模型可以识别季节时间序列中的数据模式。实施结果表明,该辣木叶干燥机比以前的工具可缩短120分钟的时间
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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