Research on the reform of university education pedagogy based on deep learning model in the context of information era

Author:

Yu Dan1

Affiliation:

1. 1 Media College , Hulunbuir University , Hulunbuir, Inner Mongolia, 021008 , China .

Abstract

Abstract In this paper, the minimization loss function optimization deep learning algorithm is used to achieve educational pedagogical reform in the context of the information technology era by continuously optimizing the loss function to reach local minima. A feature weight threshold is used to calculate the weights of each output feature, and a weighted average pooling is performed for each one-dimensional vector to produce multiple lengths of nearest neighbor samples. The deep learning model increased the scoring frequency of key values in the reform of higher education pedagogy by about 0.18, with an accuracy rate of 0.91 and an increase of lecture board words by more than 95%. To promote the smooth promotion of college education curriculum reform, the deep learning model recommends promoting the reform of college education pedagogy.

Publisher

Walter de Gruyter GmbH

Subject

Applied Mathematics,Engineering (miscellaneous),Modeling and Simulation,General Computer Science

Reference20 articles.

1. Fang, Z. (2018). Analysis of the class system reform and innovation form of the public physical health curriculum in higher education institutions. International Journal for Engineering Modelling, 31(1), 365-371.

2. Lv, Y. (2017). Multidimensional extension measurement analysis model of accounting major courses reform in higher education. Boletin Tecnico/Technical Bulletin, 55(20), 643-649.

3. Luo, Y., Qin, S. B., & Wang, D. S. (2020). Reform of embedded system experiment course based on engineering education accreditation. International Journal of Electrical Engineering Education, 15.

4. Liu, X. (2017). Performance evaluation of engineering teachers in universities based ahp and fuzzy mathematical methods. Revista de la Facultad de Ingenieria, 32(5), 141-149.

5. Xiajie, P. (2021). Teaching innovation and practice of tourism planning education. International Journal of Electrical Engineering Education, 32.

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