创新创业理论研究与实践 ›› 2026, Vol. 9 ›› Issue (5): 134-136.

• 模式探索 • 上一篇    下一篇

自动控制原理课程混合式教学改革与实践

钱美, 赵鹏, 张艳   

  1. 新疆理工学院,新疆阿克苏 843000
  • 出版日期:2026-03-10 发布日期:2026-07-01
  • 作者简介:钱美(1990—),女,四川乐山人,硕士研究生,讲师,研究方向:故障诊断。
  • 基金资助:
    2024年第三批新疆维吾尔自治区一流本科课程“自动控制原理”; 2024年新疆理工学院校级教改项目“基于‘三阶六步’模式的一流课程‘自动控制原理’改革与实践”(PT-2024009)

Reform and Practice of Blended Teaching in the Course of Automatic Control Principle

QIAN Mei, ZHAO Peng, ZHANG Yan   

  1. Xinjiang Institute of Technology, Aksu Xinjiang, 843000, China
  • Online:2026-03-10 Published:2026-07-01

摘要: 自动控制原理课程作为多个专业必修的专业基础课,具有多学科交叉、内容繁杂、理论性强、实践要求高等特点。基于传统的理论讲授已无法满足新工科要求,课程团队以智能小车控制系统的建模、分析和设计为教学主线,依托智慧教学平台,重构教学内容,建立课程内容立体学习框架,完成从学习系统到系统学习的过渡,帮助学生形成系统学习思维,创新教学设计;建立以PBL(问题导向学习)为主的双向立体化教学结构,以小组学习形式锻炼学生自主协作能力,经过一系列教学创新举措,在教学质量提升、学生素质与能力培养等方面都取得了一定的成果,对新工科建设背景下的专业人才培养目标实现起到了推动作用。

关键词: 自动控制原理, 新工科, 混合式教学, 教学设计, 教学内容, 考核改革

Abstract: The course of automatic control principles, as a compulsory foundational course for multiple majors, has the characteristics of interdisciplinary, complex content, strong theoretical basis, and high practical requirements. Traditional theoretical lectures can no longer meet the requirements of new engineering disciplines. The course team focuses on the modeling, analysis, and design of the control system for intelligent vehicles as the main teaching thread. With the support of the smart teaching platform, the teaching content is reconstructed, and a three-dimensional learning framework is established to complete the transition from learning system to system learning. This helps students form a systematic learning mindset and innovate teaching design; establishing a two-way and three-dimensional teaching structure mainly based on PBL teaching method, and exercising students'ability to cooperate independently through group learning, a series of innovative teaching measures have achieved some results in improving teaching quality, student quality and ability cultivation, etc., which has played a promoting role in achieving the professional talent training goals under the background of new engineering construction.

Key words: Automatic control principle, Emerging engineering disciplines, Hybrid teaching, Teaching design, Teaching content, Assessment reform

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