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| Pedagogical innovation in circuit-related courses for engineering-art interdisciplinary programs: cultivating complex engineering problem-solving competencies |
| LAN Mingying, GAO Li, LI Runnan, LIU Yang |
| School of Digital Media and Design Arts, Beijing University of Posts and Telecommunications, Beijing 100876 |
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Abstract This paper presents pedagogical innovations for circuit-related courses within the interdisciplinary context of engineering and art. Using the “fundamentals of intelligent open-source hardware” course as a case study, a pedagogical model is designed to cultivate students' competency in solving complex engineering problems by integrating curriculum reform with ideological and political education (IPE). The model employs the bridge-in, objective, pre-assessment, participatory learning, post-assessment, summary (BOPPPS) teaching framework and hands-on projects guided by the conceive, design, implement, operate (CDIO) principles. The curriculum is enriched and restructured, incorporating open-source hardware and a tiered, project-based learning system to enhance practical skills, lower the learning curve, and foster innovation. A key feature is the deep integration of ethical and societal considerations throughout the learning process. Through a multifaceted assessment mechanism, the model fosters students'social responsibility, humanistic awareness, and engineering ethics, with particular emphasis on their ability to navigate non-technical factors in practice. Empirical results from teaching practice demonstrate that this pedagogical model significantly enhances students' systems thinking, interdisciplinary collaboration, and overall proficiency in solving complex engineering problems. It has successfully incubated numerous student-led innovation and entrepreneurship projects that embody social value and creative design, winning accolades in various competitions. This study offers a validated model for curriculum enhancement in interdisciplinary engineering and art education.
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Received: 24 February 2025
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| Cite this article: |
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LAN Mingying,GAO Li,LI Runnan等. Pedagogical innovation in circuit-related courses for engineering-art interdisciplinary programs: cultivating complex engineering problem-solving competencies[J]. Electrical Engineering, 2025, 26(10): 32-37.
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| URL: |
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https://dqjs.cesmedia.cn/EN/Y2025/V26/I10/32
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[1] 蒋宗礼. 本科工程教育: 聚焦学生解决复杂工程问题能力的培养[J]. 中国大学教学, 2016(11): 27-30, 84. [2] 孙妍妍, 彭迪. 复杂工程问题解决认知建模及其课堂教学策略研究[J]. 中国大学教学, 2024(10): 68-76. [3] 张蓉, 文劲宇, 李红斌, 等. 新工科背景下课程思政系统设计与实施[J]. 电工技术学报, 2023, 38(11): 3094-3100. [4] 杨勇, 李红斌, 文劲宇, 等. 新工科电气工程实践教学体系重构与实践[J]. 电工技术学报, 2022, 37(19): 5074-5080. [5] 高健, 金韦利, 文斌. 融入课程思政的单片机课程教学改革探索与实践[J]. 电气技术, 2024, 25(10): 67-71. [6] 朱娟娟, 贺王鹏, 郭宝龙. 新工科电气电子类课程改革与实践: 以“信号与系统”为例[J]. 电气技术, 2024, 25(10): 72-78. [7] 贲彤, 陈龙. 融入课程思政理念的电工学教学改革探索与实践[J]. 电气技术, 2024, 25(1): 48-51. [8] 彭岷, 刘惠, 徐世中, 等. 聚焦能力交付的跨学科项目式课程群的研究与实践[J]. 高等工程教育研究, 2024(5): 69-75. [9] 李正良, 董凌燕, 余辰龙. 跨学科工程教育基层教学组织的研究与实践[J]. 高等工程教育研究, 2024(1): 16-22. [10] 孙雷, 胥孝川, 王青, 等. 人文社科与工程科技交叉融合下的工程专业课程创新与实践[J]. 新课程研究, 2021(27): 42-43. [11] 孙晶, 宋亚峰, 郄海霞, 等. 高校间医工交叉跨学科组织的组建机制: 以哈佛-MIT健康科学与技术计划为例[J]. 高等工程教育研究, 2024(4): 172-177. [12] 董桂伟, 赵国群, 管延锦, 等. 基于雨课堂和BOPPPS模型的有效教学模式探索: 以“材料物理化学”课程为例[J]. 高等工程教育研究, 2020(5): 176-182. [13] 雷环, 汤威颐, CRAWLEY E F.培养创新型、多层次、专业化的工程科技人才: CDIO工程教育改革的人才理念和培养模式[J]. 高等工程教育研究, 2009(5): 29-35. |
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