工程技术教育用低成本远程油罐控制系统的设计与实现

Christian Nomesqui Galvis, Harold Chavarro Medina, J. Ariza
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引用次数: 1

摘要

在本文中,我们描述了一种低成本的工程技术教育油箱控制系统的设计和实现,该系统是根据COVID-19大流行给教育带来的挑战而产生的。这项调查的兴趣是在短时间内建立一个远程实验室,用于控制系统教育,其中学生能够设计和实现他们的数字经典控制器(P, PI和PID)。在远程实验室中,学生可以使用编程语言Python对他们的数字控制器进行编程,并执行控制系统中常用的任务,如植物识别、建模、控制器设计、实现和调试。从技术角度来看,实验室由两个储罐组成,储罐的液位由模拟超声波传感器测量,并由树莓派和一组电机泵控制。实验室内嵌在一个网络引擎中,学生可以在家里或任何地方访问它。最后,我们展示了不同的实验装置和控制系统,以说明所提出的远程实验室的特点和潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and implementation of a low-cost remote tank control system for engineering and technology education
In this paper, we describe the design and implementation of a low-cost tank control system for engineering and technology education which arose according to the challenges for education produced by the pandemic of COVID-19. The interest with this investigation was to develop in a short time a remote laboratory for control systems education wherein the students were able to design and implement their digital classic controllers (P, PI, and PID). In the remote laboratory, the students can program their digital controllers using the programming language Python and performing the tasks that are commonly employed in control systems such as plant identification, modeling, controller design, implementation, and debugging. From the technical perspective, the laboratory is composed of two tanks whose level is measured by an analog ultrasonic sensor and it is controlled by a Raspberry Pi with a set of motor pumps. The laboratory is embedded in a web engine which allows the students to access it from their homes or in any location. At last, we expose the different experiments with the plant and the control system to illustrate the features and potentialities of the proposed remote laboratory.
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