Kontrol Sistem Mekanik Prototipe Robot Pengaduk Gabah Berbasis Internet of Things

Imran Habriansyah, Mukhtar Mukhtar, Peri Pitriadi, R. Tandioga, Firman Hamzah, Muh. Fahrun Rasyid, Yuhyil Jamalika
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Abstract

Agriculture is an activity of managing biological natural resources carried out by humans to produce food, industrial raw materials or energy sources, as well as to manage their environment. Most farmers in Indonesia still use traditional/conventional methods in the grain drying process. However, for large-scale farmers this is certainly a difficult task for mixing grain. For this reason, a system is needed that can stir grain automatically so that farmers do not need to come directly to the drying area. In this study, a grain mixer robot was applied using energy from the sun, and can be controlled remotely. This robot uses solar panels to convert solar energy into electrical energy. This electrical energy is then stored in the battery. This energy will also be used to drive the robot to stir the grain. To move the robot, the user can adjust its direction and speed through an application on a smartphone. From this study, the best remote delay time is around 0.22 seconds, while the average delay time is around 0.8 seconds.
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机械系统控制原型基于互联网的谷物调节器
农业是人类为生产粮食、工业原料或能源以及管理其环境而进行的管理生物自然资源的活动。印度尼西亚的大多数农民在谷物干燥过程中仍然使用传统/常规方法。然而,对于大规模的农民来说,这当然是一项艰巨的任务。因此,需要一种能够自动搅拌谷物的系统,这样农民就不需要直接来到干燥区。在这项研究中,谷物搅拌机机器人应用了太阳能,并可以远程控制。这个机器人使用太阳能板将太阳能转化为电能。这些电能随后被储存在电池中。这种能量也将用于驱动机器人搅拌谷物。为了移动机器人,用户可以通过智能手机上的应用程序调整它的方向和速度。从本研究来看,最佳远程延迟时间为0.22秒左右,平均延迟时间为0.8秒左右。
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