Solenoid Valve Control Design Using Arduino On Freshwater Generator Properties

Aditya Prasetyo, Amad Narto, Febria Sujarman, Riyadini Utari
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Abstract

In the modern era of the maritime world, the learning process related to ship machinery is essential and crucial for students to master. So many effective learning methods are used, one of which is the learning method using machining aids on ships. Therefore, making ship machining aids is an exciting thing to work on in this modern era. The type of teaching aid made by the author is a solenoid valve controlled by Arduino on a freshwater generator teaching aid. The method used is research and development, a process or steps to develop a new product or improve an existing product, both hardware and software. The model in this development research is a procedural model, which outlines the manufacturing steps exposed sequentially and gradually from the beginning to the end. The solenoid valve control model by Arduino on the freshwater generator teaching aid utilizes two electronic modules: the Arduino Uno type module and the one-channel timer delay relay module. The two modules are programmed directly with the buttons on the module. The working system in this prop is that the heater is filled with water and then heated, and then the water vapor is flowed through the transfer pipe and condensed using a condensor and holding tank. This system can run because of the automation control system in the electronic module.
使用 Arduino 对淡水发电机特性进行电磁阀控制设计
在现代海事世界中,与船舶机械有关的学习过程对于学生来说是必不可少的,也是必须掌握的。因此,人们使用了许多有效的学习方法,其中之一就是使用船舶加工辅助工具的学习方法。因此,在现代社会,制作船舶加工教具是一件令人兴奋的事情。作者制作的教具类型是淡水发电机教具上由 Arduino 控制的电磁阀。所采用的方法是研究与开发,即开发新产品或改进现有产品(包括硬件和软件)的过程或步骤。本次开发研究中的模型是一个程序模型,它概述了从开始到结束依次和逐步暴露出来的制造步骤。淡水发生器教具上的 Arduino 电磁阀控制模型使用了两个电子模块:Arduino Uno 型模块和单通道定时延时继电器模块。这两个模块直接通过模块上的按钮进行编程。该道具的工作系统是,加热器装满水后加热,然后水蒸气流经传输管道,利用冷凝器和保温箱进行冷凝。该系统之所以能够运行,是因为电子模块中装有自动化控制系统。
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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