讲座分配系统的自适应接口模型

Yuji Hashiura, T. Matsuo, T. Terashima
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引用次数: 1

摘要

近年来,选修课制度在许多大学被广泛采用。学生可以根据自己的喜好和目的自由选择讲课内容,这是最重要的教育制度之一。选修科目具有较高的灵活性,可以提高学生的学习动机。但是,由于许多大学采用的机械的课程分配机制没有考虑到学生的偏好和目的,现有的琐碎机制无法发挥选修科目的效果。特别是,如果听课的学生人数超过座位数,大学就会以抽签或先到的方式选择学生,并提供听课的权利。课堂分配问题是许多学者广泛研究的问题。然而,在现有的大多数研究中,课程分配系统都有复杂的输入法和界面来让学生表明自己的偏好。学生输入自己喜好的能力取决于经验和知识。这是不同的每个学生都有。提出了一种自适应界面设计模型。该模型根据学生的能力改变自适应界面设计。在我们的方法中,首先,当学生第一次使用系统时,他们声明自己的能力。其次,当学生操作系统时,系统会获得操作日志。然后对系统进行设计和界面设计,供每个学生后续使用。系统接口是基于用户模型来定义的,用户模型是通过预先研究发现的用户行为特征来构建的。我们提出的方法和模型的优点如下:首先,该界面支持学生的操作。其次,学生可以准确地输入他/她的喜好。因此,有效地进行了讲座分配。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Adaptive Interface Model for Lecture Allocation System
In recent years, elective subject system is widely employed in many universities. It is one of the most important educational system in which students can freely select the lecture based on their preferences and purpose. Elective subject is expected to increase student’s motivation for learning because this has high flexibility. But, because mechanical lecture allocation mechanisms used by many universities don’t consider student’s preferences and purpose, existing trivial mechanism cannot bring out the effects of elective subjects. Especially when the number of student who attend a lecture exceeds the seating capacity, the university choose student by lottery or first-arrival basis and provides with the right to attend a lecture. Lecture allocation problems are widely researched by a lot of researchers. However, in most of existing researches, the lecture allocation systems have a complicated input methods and interfaces to make student’s indicate their preferences. Student’s ability to input his/her preferences depends on the experience and knowledge. It is different by each students have. This paper proposes an adaptive interface design model in lecture allocation system. The model changes adaptive interface design based on student’s ability. In our method, first, when students use the system for the first time, they declare their abilities. Second, when students operate the system, the system gets operational logs. Then the system design and interface for each student in subsequent use. System interfaces are defined base on user model which is constructed by features of user behavior defected through our preinvestigation. Advantages of our proposed methods and model are as follows. First the interface supports student’s operations. Second, student can input his/her preferences precisely. As the result, lecture allocation is conducted effectively.
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