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首页> 外文期刊>IEEE Transactions on Education >Dynamic Learner-Assisted Interactive Learning Tools for Power Systems Engineering Courses
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Dynamic Learner-Assisted Interactive Learning Tools for Power Systems Engineering Courses

机译:电力系统工程课程的动态学习者辅助交互式学习工具

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Contribution: Interactive learning tools with multiple learning support functionalities are nonexistent in power engineering education. An interactive learning tool for supporting student learning in power engineering is shown to improve analytical skills of students.Background: Power network architectures are becoming increasingly complex, requiring the development of educational tools to familiarize students with challenging engineering problems associated with these emerging architectures. Interactive functionalities offered by existing learning tools are inadequate to achieve the learning objectives of the evolving power engineering curriculum.Intended Outcomes: It is expected to improve students' conceptual understanding and analytical skill base by recognizing the correct base-values and actual ratings of power system devices in per-unit calculations, hence students will able to score high marks in exams.Application Design: It is essential to assess the knowledge level of the student for creating effective learning exercises. The proposed interactive learning tools first assess the student's knowledge level, then based on the results create a specific exercise giving a network model, and a unique set of parameters. The tools include solving assistance with three support-levels; in each level more information is provided to assist with solution process enabling students to recognize specific mistakes in their calculations. Once a given exercise is successfully completed, the student is prompted to undertake more challenging exercises, which will assist their progressive cognitive development.Findings: The average mark for the per-unit calculation question in the MST was improved by approximate to 40% after implementing the proposed learning tool, demonstrating its effectiveness.
机译:贡献:具有多种学习支持功能的交互式学习工具在动力工程教育中不存在。显示了一种用于支持电力工程专业学生学习的交互式学习工具,可以提高学生的分析能力。背景:电力网络体系结构正变得越来越复杂,需要开发教育工具以使学生熟悉与这些新兴体系结构相关的具有挑战性的工程问题。现有学习工具提供的交互功能不足以实现不断发展的电力工程课程的学习目标。预期结果:希望通过认识正确的电力基础价值和实际评级,提高学生的概念理解和分析技能基础应用程序设计:评估学生的知识水平对于创建有效的学习练习至关重要。提出的交互式学习工具首先评估学生的知识水平,然后根据结果创建给出网络模型和一组独特参数的特定练习。这些工具包括在三个支持级别上解决协助;在每个级别中,都会提供更多信息来协助解决过程,使学生能够识别计算中的特定错误。成功完成给定的练习后,系统会提示学生进行更具挑战性的练习,这将有助于他们进行性认知发展。发现:实施后,MST中单位计算问题的平均分数提高了约40%建议的学习工具,证明其有效性。

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