IoT Applications in Fermented Tempe Production

Ery Safrianti, Linna Oktaviana Sari, Fitri Wulandari, Feranita
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引用次数: 2

Abstract

Tempe is made from fermented soybeans with the fungus Rhizopus Oligosporus. In the manufacture of tempe producers often experience failure. The main cause is the temperature and humidity of the room where the tempe production is not maintained. The absence of supporting devices for detecting temperature and humidity in the factory is an obstacle in the tempe fermentation process. Manufacturers can only estimate the temperature and humidity in the fermentation chamber. If the temperature is considered too hot, tempe producers will come to the factory and open the air vents so that the room temperature returns to normal. To increase tempe production and reduce the risk of production failure, it is necessary to design an automatic control and monitoring tool through the use of the Internet of Things (IoT). The tools used in this research are ESP8266, DHT22, Relay, Power Bank as a power source, fans, and lights. The results obtained from the test are that if the temperature and humidity are above or below the normal temperature (250C-320C), a notification will appear on the user's smartphone via the Blynk application. If the temperature is too hot, the fan will turn on automatically. If the temperature is too cold, the light will turn on. Monitoring data can also be viewed on the things peak website in graphic form.
物联网在发酵豆豉生产中的应用
Tempe是由大豆发酵制成的,其中含有真菌少孢根霉。在tempe的生产中,生产商经常遇到失败。主要原因是没有保持温度生产的房间的温度和湿度。工厂内缺乏检测温度和湿度的配套设备,是发酵过程中的一个障碍。制造商只能估计发酵室的温度和湿度。如果认为温度过高,tempe生产商将来到工厂,打开通风口,使室温恢复正常。为了提高产量,降低生产故障的风险,有必要通过使用物联网(IoT)设计一种自动控制和监控工具。本研究使用的工具是ESP8266, DHT22,继电器,作为电源的充电宝,风扇和灯。从测试中获得的结果是,如果温度和湿度高于或低于正常温度(250 -320摄氏度),则会通过Blynk应用程序在用户的智能手机上显示通知。如果温度过高,风扇会自动打开。如果温度太低,灯就会亮。监控数据也可以在物峰网站以图形形式查看。
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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