Pneumatic Cylinders Controlled by Two Different Controllers, Arduino and MyRIO: an Educational Approach

Pub Date : 2022-03-14 DOI:10.46300/9109.2022.16.12
M. Ghinea, Mihai Agud, Mircea Bodog, Mark Antonio Agud
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Abstract

Nowadays, new pneumatic equipment is becoming attrac-tive to many industries that are beginning to accept the idea of replacing their hydraulic equipment with pneumatic one. Beginner engineers and students have a hard time under-standing the differences between different controllers in the market and their applicability. This article provides in-formation to support the understanding of the way the elec-tronic control of stand-alone pneumatic systems works. This comparative study provides future specialists with the core knowledge concerning the influence that controllers have on the operation of pneumatic systems, as well as the principles of the controllers' utilization. The steps to take in controllers' utilization list the construction of the block diagram of an electronically controlled pneumatic system, followed by the simulation of the pneumatic system using modern software tools and ended by the assembly of the physical system and its programming by means of different classes controllers. If the control by pneumatic devices was still accepted, thus maintaining full-pneumatic systems on the market, the use of industrial electronic controllers would become indispensable both for more precise control of the systems and for increased industrial integrability. The compared results of a double-acting pneumatic cylin-der control using the Arduino Uno and MyRIO-1900 con-trollers (academic equipment and for stand-alone applica-tions) are presented. This way, the problem of pneumatic installations that requires equal forces to move the load in both directions is solved. The study performed a compari-son of the times and cycles of the piston rod, variables that are defined in many applications. These results are also compared with those obtained by simulation using Automa-tion Studio software (AS). The study was conducted to assess the interchangeability of both controllers in this common architecture. The research results are a step forward to-wards the implementation of electronic control in pneu-matic systems using industrial controllers and then towards the harmonization of the structures thus established with systems in Industry 4.0.
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Arduino和MyRIO两种不同控制器控制的气缸:一种教育方法
如今,新型气动设备正吸引着许多行业,这些行业开始接受用气动设备取代液压设备的想法。初级工程师和学生很难理解市场上不同控制器之间的差异及其适用性。本文提供的信息有助于理解独立气动系统的电子控制工作方式。这项比较研究为未来的专家提供了有关控制器对气动系统运行的影响以及控制器使用原理的核心知识。控制器的使用步骤列出了电子控制气动系统框图的构建,然后使用现代软件工具对气动系统进行模拟,最后通过不同类别的控制器组装物理系统及其编程。如果气动装置的控制仍然被接受,从而在市场上保持完整的气动系统,那么工业电子控制器的使用对于系统的更精确控制和增加工业可积性都将是必不可少的。介绍了使用Arduino Uno和MyRIO-1900控制器(学术设备和独立应用)的双作用气动气缸控制的比较结果。通过这种方式,解决了气动装置需要相等的力来在两个方向上移动负载的问题。该研究对活塞杆的时间和循环进行了比较,这些变量在许多应用中都有定义。这些结果还与使用Automation Studio软件(AS)模拟获得的结果进行了比较。进行这项研究是为了评估在这种通用架构中两个控制器的互换性。该研究结果朝着使用工业控制器在气动系统中实现电子控制迈出了一步,然后朝着将由此建立的结构与工业4.0中的系统相协调迈出了一大步。
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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