Research on Artificial Intelligence Enabling High-Quality Development of Vocational Education

IF 3.1 Q1 Mathematics
Ming Kong, Feilong Yu, Zhichao Zhang
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引用次数: 0

Abstract

Abstract This paper studies the use of artificial intelligence technology in the field of education and the way of empowering vocational education and constructs a wisdom teaching model of vocational education based on artificial intelligence. It also applies entropy weight and a fuzzy comprehensive evaluation model to determine evaluation indexes and weights, constructs a fuzzy relationship matrix, and synthesizes a fuzzy comprehensive evaluation model. Based on the model, the teaching effect of vocational education with artificial intelligence is studied, and the advantages of wisdom teaching in the creation of a learning environment and the triggering of students’ interest in learning, creative thinking and problem-solving ability are analyzed by comparing with traditional teaching methods. The results show that there is a significant difference between the effect of AI teaching and traditional teaching, p<0.05. For problem-solving ability, the average score of AI teaching students (M=4.049) is higher than the average score of traditional teaching (M=3.153), where t=14.745, p=0<0.05. The study is crucial for the utilization of artificial intelligence in education and the modernization and reform of teaching.
人工智能助力职业教育高质量发展研究
摘要:本文研究了人工智能技术在教育领域的应用以及为职业教育赋能的方式,构建了基于人工智能的职业教育智慧教学模式。运用熵权法和模糊综合评价模型确定评价指标和权重,构建模糊关系矩阵,合成模糊综合评价模型。基于该模型,研究了人工智能职业教育的教学效果,通过与传统教学方法的比较,分析了智慧教学在创造学习环境、激发学生学习兴趣、创造性思维和解决问题能力等方面的优势。结果显示,人工智能教学效果与传统教学有显著差异,p<0.05。在问题解决能力方面,AI教学学生的平均得分(M=4.049)高于传统教学学生的平均得分(M=3.153),其中t=14.745, p=0<0.05。该研究对于人工智能在教育中的应用以及教学现代化与改革具有重要意义。
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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来源期刊
Applied Mathematics and Nonlinear Sciences
Applied Mathematics and Nonlinear Sciences Engineering-Engineering (miscellaneous)
CiteScore
2.90
自引率
25.80%
发文量
203
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