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Motivational Design in an Intelligent Tutoring System That Helps Students Make Good Task Selection Decisions

机译:智能辅导系统中的动机设计,可帮助学生做出正确的任务选择决策

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Making effective problem selection decisions is an important yet challenging self-regulated learning (SRL) skill. Although efforts have been made to scaffold students' problem selection in intelligent tutoring systems (ITS), little work has tried to support students' learning of the transferable problem selection skill that can be applied when the scaffolding is not in effect. The current work uses a user-centered design approach to extend an ITS for equation solving, Lynnette, so the new designs may motivate and help students learn to apply a general, transferable rule for effective problem selection, namely, to select problem types that are not fully mastered ("Mastery Rule"). We conducted user research through classroom experimentation, interviews and sto-ryboards. We found that the presence of an Open Learner Model significantly improves students' problem selection decisions, which has not been empirically established by prior work; also, lack of motivation, especially lack of a mastery-approach orientation, may cause difficulty in applying the Mastery Rule. Based on our user research, we designed prototypes of tutor features that aim to foster a mastery-approach orientation as well as transfer of the learned Mastery Rule when the scaffolding is faded. The work contributes to the research of supporting SRL in ITSs through a motivational design perspective, and lays foundation for future controlled experiments to evaluate the transfer of the problem selection skill in new tutor units where there is no scaffolding.
机译:做出有效的问题选择决策是一项重要的但具有挑战性的自我调节学习(SRL)技能。尽管已经在智能辅导系统(ITS)中为脚手架学生的问题选择做出了努力,但是很少有工作试图支持学生学习在脚手架无效时可以应用的可转移问题选择技能。当前的工作使用以用户为中心的设计方法来扩展ITS来解决方程式Lynnette,因此新的设计可能会激发并帮助学生学习应用通用的可转换规则进行有效的问题选择,即选择问题类型为尚未完全掌握(“掌握规则”)。我们通过课堂实验,访谈和记事板进行了用户研究。我们发现开放学习者模型的存在显着改善了学生的问题选择决策,而先前的工作并没有凭经验建立这种模型。同样,缺乏动力,尤其是缺乏掌握方法的取向,可能会导致难以运用“掌握规则”。根据我们的用户研究,我们设计了辅导员功能的原型,旨在促进掌握方法的取向以及在脚手架褪色时转移所学的掌握规则。这项工作通过激励性的设计视角,为在ITS中支持SRL的研究做出了贡献,并为将来的受控实验奠定了基础,以评估在没有脚手架的新型补习单元中问题选择技能的转移。

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