实验室研究与探索2024,Vol.43Issue(10) :142-146.DOI:10.19927/j.cnki.syyt.2024.10.027

AI赋能"自动化系统综合课程设计"探索

Exploration on"Comprehensive Course Design of Automation Systems"Based on AI Empowerment

朱俊杰 薛永飞 周国雄 郑志安
实验室研究与探索2024,Vol.43Issue(10) :142-146.DOI:10.19927/j.cnki.syyt.2024.10.027

AI赋能"自动化系统综合课程设计"探索

Exploration on"Comprehensive Course Design of Automation Systems"Based on AI Empowerment

朱俊杰 1薛永飞 1周国雄 1郑志安1
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作者信息

  • 1. 中南林业科技大学电子信息与物理学院,长沙 410004
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摘要

当前人工智能技术的迅猛发展促进人工智能技术渗入教育教学.以人工智能赋能"自动化系统综合课程设计",探索教学内容和方法改革,提高课程内容的前瞻性和教学方法的现代性,让学生主动地学,让教师创造性地教.通过在微控制器平台部署和优化人工智能算法,结合实际案例分析和项目驱动教学方式,让学生深入理解人工智能技术在电子产品设计中的应用.该方法不仅可培养学生面对复杂问题时的创新思维和实践能力,还可促进其对在电子工程及人工智能领域的专业知识理解.

Abstract

The rapid development of artificial intelligence technology promotes the integration of education and teaching,the"Comprehensive Course Design of Automation Systems"is empowered with AI.This is designed to enhance the modernity of course content and the foresight of teaching methods,to enable students more proactive in learning and teachers more creative in teaching.AI algorithms are deployed and optimized on microcontroller platforms,combined with case analysis and project-driven teaching methods,allowing students to gain a deep understanding of the application of AI technology in electronic product design.This innovative method not only cultivates students'innovative thinking and practical abilities in tackling complex problems,but also lays a solid foundation for their future careers in electronic engineering and the field of artificial intelligence.

关键词

人工智能/微控制器平台/项目驱动教学/创新思维

Key words

artificial intelligence/microcontroller platforms/project-driven teaching/innovative thinking

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基金项目

国家自然科学基金项目(62303494)

出版年

2024
实验室研究与探索
上海交通大学

实验室研究与探索

CSTPCD北大核心
影响因子:1.69
ISSN:1006-7167
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