通过机器人技术进行分类

Javier López, Niko Myller, E. Sutinen
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引用次数: 7

摘要

我们描述了一种新的算法具体化方法,将当前的软件可视化模式从计算机屏幕扩展到现实世界。该方法结合了动手机器人技术和传统的算法可视化技术,以帮助不同的学习者理解给定算法的基本思想。从这个角度来看,机器人解释了一种算法,而它们的内部程序和外部外观决定了它们在其中的角色。这使我们有可能将算法带入真实的物理世界,学生甚至可以在执行过程中触摸数据结构。在第一个版本中,我们集中讨论了一些排序算法作为概念验证。此外,我们还对13至15岁的学生进行了评估,他们使用具体化来了解一种排序算法。初步结果表明,该工具可以提高学习效率。现在,我们的目标是建立一个同时支持可视化和基于机器人的算法具体化的环境。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sorting out sorting through concretization with robotics
We describe a novel approach to algorithms concretization that extends the current mode of software visualization from computer screens to the real world. The method combines hands-on robotics and traditional algorithm visualization techniques to help diverse learners comprehend the basic idea of the given algorithm. From this point of view the robots interpret an algorithm while their internal program and external appearance determine the role they have in it. This gives us the possibility to bring algorithms into the real physical world where students can even touch the data structures during the execution. In the first version, we have concentrated on a few sorting algorithms as a proof-of-concept. Moreover, we have carried out an evaluation with 13-to-15-year-old students who used the concretization for gaining insight into one sorting algorithm. The preliminary results indicate that the tool can enhance learning. Now, our aim is to build an environment that supports both visualizations and robotics based concretizations of algorithms at the same time.
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