Zhao Dingzhou, Li Hongming, Xu Annan, Song Tingchang
Physical Education College of Zhengzhou University, Zhengzhou, China.
Southampton Education School, University of Southampton, Southampton, United Kingdom.
Front Psychol. 2022 Jun 9;13:843493. doi: 10.3389/fpsyg.2022.843493. eCollection 2022.
Educational innovation reform is used as the background. In response to the need to propose innovative educational programs, the concepts of Distributed Deep Neural Network (DDNN) and deep learning under edge computing are used as the basis. A teaching program for Science Technology Engineering Mathematics (STEM) is proposed. The average training method is used to verify the performance of the model. Sampling rate means the number of samples per second taken from a continuous signal to form a discrete signal. The accuracy and sample ratio obtained are higher than 95%. The communication volume is 309 bytes, which is in a good range. On this basis, a university uses STEM teaching plans and questionnaires to influence the psychological mobilization factors of students' deep learning effects. Challenging learning tasks and learning motivation have the greatest impact on deep learning, and conclusions that both are positive effects are obtained. Therefore, STEM innovative teaching programs can be widely used. The plan provides a reference theory for improving teaching innovation in the context of the basic educational curriculum reform in China. STEM curriculum is the dual subject of teachers and students, and the learning community includes multi-stakeholders. There are hierarchical relationships among the subjects. In terms of financial support, the first two funds come from the school. Learning communities have dedicated sponsorship partners complemented by clear financial planning. There is not much difference in course resources. Still, the learning community will provide more diversified media forms and special websites, and other auxiliary resources are open to all users. They can obtain first-hand resources without applying. In terms of project form, in addition to the core classroom teaching, the latter two can provide richer activities and realize the diversity of time, space, and information exchange.
以教育创新改革为背景。为响应提出创新教育项目的需求,以分布式深度神经网络(DDNN)和边缘计算下的深度学习概念为基础。提出了一个科学技术工程数学(STEM)教学项目。采用平均训练方法来验证模型的性能。采样率是指每秒从连续信号中获取以形成离散信号的样本数量。获得的准确率和采样率均高于95%。通信量为309字节,处于良好范围。在此基础上,一所大学采用STEM教学计划和问卷来影响学生深度学习效果的心理动员因素。具有挑战性的学习任务和学习动机对深度学习影响最大,并得出两者均产生积极影响的结论。因此,STEM创新教学项目可被广泛应用。该计划为中国基础教育课程改革背景下提高教学创新提供了参考理论。STEM课程是教师和学生的双重主体,学习社区包括多个利益相关者。各主体之间存在层级关系。在资金支持方面,前两项资金来自学校。学习社区有专门的赞助伙伴,并辅以明确的财务规划。课程资源差异不大。不过,学习社区将提供更多样化的媒体形式和专门网站,其他辅助资源对所有用户开放。他们无需申请即可获取第一手资源。在项目形式方面,除了核心课堂教学外,后两者可以提供更丰富的活动,并实现时间、空间和信息交流的多样性。