支持代码可维护性技能开发的智能辅导系统

IF 2.9 3区 教育学 Q2 COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS
Nikola M. Luburić;Luka Ž. Dorić;Jelena J. Slivka;Dragan Lj. Vidaković;Katarina-Glorija G. Grujić;Aleksandar D. Kovačević;Simona B. Prokić
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引用次数: 0

摘要

软件工程师的任务是编写功能正确的高质量代码。可维护性是一个关键的代码质量属性,它决定了分析、修改、重用和测试软件组件的难易程度。这个质量属性显著地影响软件的生命周期成本,有助于开发人员的生产力和其他质量属性。因此,学术界和工业界强调需要培训软件工程师来构建可维护的软件代码。不幸的是,代码可维护性是一个定义不清的领域,很难教授和学习。软件工程专业学生数量的增加和有能力的教师的缺乏加剧了这个问题。现有的教师依赖于可扩展的一刀切的教学方法,这是无效的。电子学习技术的进步可以缓解这些问题。我们的主要贡献是设计了一种新的评估项目类型,即可维护性挑战。它集成到标准的智能辅导系统(ITS)体系结构中,以开发分析和重构高级代码可维护性问题的技能。我们的次要贡献包括代码可维护性知识组件模型和支持c#编程语言可维护性挑战的ITS的实现。我们在两年多的时间里与本科生一起设计、开发和评估了智能交通系统,采用了以设计科学为基础的混合方法。通过对59名本科生的实地研究,实证评估达到了高潮。我们报告评估结果,展示我们的贡献的效用。我们的贡献支持软件工程讲师大规模地开发他们学生的代码可维护性技能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Intelligent Tutoring System to Support Code Maintainability Skill Development
Software engineers are tasked with writing functionally correct code of high quality. Maintainability is a crucial code quality attribute that determines the ease of analyzing, modifying, reusing, and testing a software component. This quality attribute significantly affects the software's lifetime cost, contributing to developer productivity and other quality attributes. Consequently, academia and industry emphasize the need to train software engineers to build maintainable software code. Unfortunately, code maintainability is an ill-defined domain and is challenging to teach and learn. This problem is aggravated by a rising number of software engineering students and a lack of capable instructors. Existing instructors rely on scalable one-size-fits-all teaching methods that are ineffective. Advances in e-learning technologies can alleviate these issues. Our primary contribution is the design of a novel assessment item type, the maintainability challenge. It integrates into the standard intelligent tutoring system (ITS) architecture to develop skills for analyzing and refactoring high-level code maintainability issues. Our secondary contributions include the code maintainability knowledge component model and the implementation of an ITS that supports the maintainability challenge for the C# programming language. We designed, developed, and evaluated the ITS over two years of working with undergraduate students using a mixed-method approach anchored in design science. The empirical evaluations culminated with a field study with 59 undergraduate students. We report on the evaluation results that showcase the utility of our contributions. Our contributions support software engineering instructors in developing the code maintainability skills of their students at scale.
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来源期刊
IEEE Transactions on Learning Technologies
IEEE Transactions on Learning Technologies COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS-
CiteScore
7.50
自引率
5.40%
发文量
82
审稿时长
>12 weeks
期刊介绍: The IEEE Transactions on Learning Technologies covers all advances in learning technologies and their applications, including but not limited to the following topics: innovative online learning systems; intelligent tutors; educational games; simulation systems for education and training; collaborative learning tools; learning with mobile devices; wearable devices and interfaces for learning; personalized and adaptive learning systems; tools for formative and summative assessment; tools for learning analytics and educational data mining; ontologies for learning systems; standards and web services that support learning; authoring tools for learning materials; computer support for peer tutoring; learning via computer-mediated inquiry, field, and lab work; social learning techniques; social networks and infrastructures for learning and knowledge sharing; and creation and management of learning objects.
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