Practical Research on Promoting The Construction of New Engineering Education through Discipline Competition by PDCA Cycle

Zhongxue Yang Zhongxue Yang, Yiqin Bao Zhongxue Yang, Qiang Zhao Yiqin Bao, Hao Zheng Qiang Zhao, YuLu Bao Hao Zheng
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Abstract

At the beginning of the emergence of the concept of new engineering, its connotation interpretation and paradigm change theme have become the focus of attention. The new engineering should not only pay attention to the construction of new industries and new specialties under the new technology, but also pay attention to the continuous training effect of talents under the new engineering education. Discipline competition is an effective way to cultivate the innovation and entrepreneurship ability of college students and improve their comprehensive quality. In order to promote the sustainable and good construction of new engineering education in Colleges and universities, this paper uses PDCA cycle as a means to integrate multi-disciplinary technology through discipline competition, promote the ability of college students to solve complex engineering problems, and thus improve the teaching quality of new engineering. Practice has proved that PDCA is applied to discipline competition in a circular way, providing a feasible path for the implementation of new engineering. After three years of tracking assessment on three different classes of computer science, the graduation design score has been raised from about 82 points to about 85 points, and the students’ theoretical level, practical ability, innovation ability and discipline competition design level have been significantly improved.
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以 PDCA 循环促进学科竞赛推动新工科教育建设的实践研究
新工科概念出现之初,其内涵解读和范式变革主题就成为关注的焦点。新工科不仅要关注新技术下新产业、新专业的建设,更要关注新工科教育下人才的持续培养效果。学科竞赛是培养大学生创新创业能力、提高大学生综合素质的有效途径。为了促进高校新工科教育持续良好的建设,本文以PDCA循环为手段,通过学科竞赛整合多学科技术,促进大学生解决复杂工程问题的能力,从而提高新工科的教学质量。实践证明,PDCA循环应用于学科竞赛,为新工科的实施提供了可行的路径。经过对计算机专业三个不同班级三年的跟踪考核,毕业设计成绩由82分左右提高到85分左右,学生的理论水平、实践能力、创新能力和学科竞赛设计水平都有了明显提高。
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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