教育示范台现代化是提高未来工程师实训质量的途径

V. G. Sidorov, G. M. Grinberg, D. A. Barkhatova
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引用次数: 0

摘要

对未来工程师的实践培训是他们教育的重要组成部分,学生可以从中获得真正的专业经验。当然,提高这种培训的质量需要改进实验室设备和教学工具,以满足当前工程行业的发展水平。在这种情况下,作为职业活动对象原型的教育立场的现代化是令人感兴趣的。分析和更新教育示范展台将有可能使学习过程更接近未来职业的真实条件,而不会离开教育机构的墙壁。本研究的目的是描述教育和演示展台现代化的过程(以“8K-14火箭模型”展台为例),以提高未来工程人才的实践培训质量。材料和方法。这项研究是由弗拉基米尔·波塔宁奖学金项目支持的项目的一部分,从2021年开始。这项研究涉及西伯利亚列谢特涅夫国立科技大学自动控制系统系的讲师和学生。8K-14火箭模型被选为现代化的主题,作为最受欢迎的,同时也是过时的模型。研究方法包括心理学文献、教育学文献和专业文献分析、看台现代化经验研究和结果总结。研究的主要成果是丰富未来工程人才培养的实践,包括几种工程设计技术的发展,并旨在实现单一的结果,在现代化的教育和示范站的背景下。因此,在“8K-14火箭模型”展台的更新过程中,学生们运用了现代化的材料和技术手段(LED条、LED、电动机、彩色TFT触摸显示器、矩阵键盘、旋转编码器等)和各种技术。使用Arduino平台的一个微控制器作为控制设备。用户使用触摸屏显示器、机械键盘、编码器和操纵杆控制支架。显示器不仅作为信息显示器官,而且作为控制元素,允许您在展台的工作中引入与编程语言(更广为人知的是GUI(图形用户界面))功能相关的附加功能。此外,在现代化展台的过程中,学生们经常需要额外的部件,这些部件的实现是使用3D打印技术实现的。最后,总结了“8K-14火箭模型”教育展台现代化改造过程中的经验,为加强未来工程人才的实训提供了一条途径。学生和讲师以现代化教育示范手段的联合工作将加强学生的实践训练,使学生深入到独立的工程和设计活动中,并使学习过程总体上更加令人兴奋和有趣。这种方法可以在任何教育和示范展台上实施。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modernization of the Educational Demonstration Stand as A Way to Improve the Quality of Practical Training of Future Engineers
Practical training for future engineers is an important and integral part of their education, in which students gain real professional experience. Improving the quality of such training, of course, requires improving laboratory equipment and teaching tools that meet the current level of development of the engineering industry. In these conditions, the modernization of educational stands as prototypes of objects of professional activity is of interest. Analysis and updating of educational demonstration stands will make it possible to bring the learning process closer to the real conditions of the future profession, without leaving the walls of the educational institution. The purpose of the study is to describe the process of modernizing the educational and demonstration stand (using the example of the “8K-14 rocket model” stand) as a way to improve the quality of practical training of future engineering personnel. Materials and methods. The research was carried out as part of a project supported by the Vladimir Potanin scholarship program, starting in 2021. The study involved lecturers and students of the Department of Automatic Control Systems of the Reshetnev Siberian State University of Science and Technology. The 8K-14 rocket model was chosen as the subject of modernization, as the most popular and, at the same time, outdated model. The research methods included analysis of psychological, pedagogical and specialized literature, study of the experience of modernizing the stand, and generalization of the results. The main result of the study is to enrich the practice of training future engineering personnel, including the development of several engineering design technologies, and aimed at achieving a single result, in the context of modernization of educational and demonstration stands. Therefore, in the process of updating the “8K-14 rocket model” stand, students use modern material and technical means (LED strips, LEDs, electric motor, color TFT touch display, matrix keyboard, rotary encoder, etc.) and various technologies. One of the microcontrollers of the Arduino platform is used as a control device. The user using a touch screen display, mechanical keyboard, encoder and joystick controls the stand. The display, acting not only as an information display organ, but also as a control element, allows you to introduce additional functionality into the work of the stand related to the capabilities of the programming language, better known as GUI (Graphical User Interface). In addition, in the process of modernizing a stand, students often require additional parts, the implementation of which is realized using 3D printing technology. In conclusion , the experience of the process of modernizing the educational stand “8K-14 rocket model” is summarized as a way to strengthen the practical training of future engineering personnel. The joint work of students and lecturers to modernize educational demonstration means will allow to strengthen the practical training of students, to deepen students into independent engineering and design activities, and make the learning process, in general, more exciting and interesting. This approach can be implemented using any educational and demonstration stand.
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