基于Python编程的数字示波器在电气课程设计教学的应用

Application of Digital Oscilloscope Based on Python Programming in Electrical Course Design Teaching

  • 摘要: 该文以培养电气工程专业新工科创新型人才为目标,针对电气工程学科课程设计缺乏“多样化、个性化”梯度设计的问题,开发了以学生为主体、教师引导辅助的基于Python编程的数字示波器综合课程设计。该课程设计以电气专业学生的专业特点、兴趣爱好和实践目标为需求导向,采用开放式、多元化的理念,设计并实现基于Python语言编程的数字示波器相关功能。课程从教学模式、实验教学内容、过程管理和考核评价等方面进行了多维度的改革与探索。在教学过程中,通过引导学生围绕设定的功能目标自主学习、探索与实践,显著提升了其分析问题、解决问题、工程开发以及创新能力等方面的综合素质。

     

    Abstract: To cultivate innovative talents for the new engineering disciplines in electrical engineering and to address the lack of “diversified and personalized” gradient design in current electrical engineering course design, this paper develops a student-centered, teacher-guided comprehensive course design for a digital oscilloscope based on Python programming. Guided by the professional characteristics, interests, and practical goals of electrical engineering students, the course design adopts an open and diversified concept to design and implement digital oscilloscope functions using Python programming. Multi-dimensional reforms and explorations are carried out in terms of teaching mode, experimental teaching content, process management and assessment. During the teaching process, students are guided to independently learn, explore, and practice toward the defined functional objectives, which significantly enhances their comprehensive abilities in problem analysis, problem solving, engineering development, and innovation.

     

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