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Algorithm and intelligent tutoring system design for ladder logic programming

机译:梯形逻辑程序的算法和智能辅导系统设计

摘要

With the help of the internet, teaching is not constrained in the traditional classroom pedagogy; the instructors can put the course material on the website and allow the students go on to the course webpage as an alternative way to learn the domain knowledge. The problem here is how to design a web-based system that is intelligent and adaptive enough to teach the students domain knowledge in Programmable Logic Controller (PLC). In my research, I proposed a system architecture which combines the pre-test, cased-based reasoning (i.e., heuristic functions), tutorials and tests of the domain concepts, and post-test (i.e., including pre-exam and post-exam) to customize students? needs according to their knowledge levels and help them learn the PLC concepts effectively. I have developed an intelligent tutoring system which is mainly based on the feedback and learning preference of the users? questionnaires. It includes many pictures, colorful diagrams, and interesting animations (i.e., switch control of the user?s rung configuration) to attract the users? attention. From the model simulation results, a knowledge proficiency effect occurs on problem-solving time. If the students are more knowledgeable about PLC concepts, they will take less time to complete problems than those who are not as proficient. Additionally, from the system experiments, the results indicate that the learning algorithm in this system is robust enough to pinpoint the most accurate error pattern (i.e., almost 90 percent accuracy of mapping to the most similar error pattern), and the adaptive system will have a higher accuracy of discerning the error patterns which are close to the answers of the PLC problems when the databases have more built-in error patterns. The participant evaluation indicates that after using this system, the users will learn how to solve the problems and have a much better performance than before. After evaluating the tutoring system, we also ask the participants to submit the survey (feedback), which will be taken into serious consideration in our future work.
机译:借助互联网,教学不受传统课堂教学的限制。讲师可以将课程材料放在网站上,并允许学生进入课程网页,作为学习领域知识的替代方法。这里的问题是如何设计一个基于网络的系统,该系统具有足够的智能和适应性,可以在可编程逻辑控制器(PLC)中向学生传授领域知识。在我的研究中,我提出了一种系统架构,该架构将测试前,基于案例的推理(即启发式功能),领域概念的教程和测试以及测试后(即包括考试前和考试后)结合在一起)来定制学生?根据他们的知识水平进行需求,并帮助他们有效地学习PLC概念。我已经开发了一种智能辅导系统,主要基于用户的反馈和学习偏好?问卷。它包括许多图片,彩色图表和有趣的动画(即,对用户梯级配置的切换控制)以吸引用户?注意。从模型仿真结果来看,知识熟练程度会影响解决问题的时间。如果学生对PLC概念有更多的了解,那么与那些不那么熟练的学生相比,他们将花费更少的时间来完成问题。另外,从系统实验中,结果表明,该系统中的学习算法具有足够的鲁棒性,可以查明最准确的错误模式(即,映射到最相似的错误模式的准确性接近90%),并且自适应系统将具有当数据库具有更多内置错误模式时,辨别与PLC问题答案接近的错误模式的准确性更高。参加者评估表明,使用该系统后,用户将学习如何解决问题,并具有比以前更好的性能。在评估辅导系统后,我们还要求参与者提交调查(反馈),我们的未来工作将对此进行认真考虑。

著录项

  • 作者

    Cheng Yuan-Teng;

  • 作者单位
  • 年度 2009
  • 总页数
  • 原文格式 PDF
  • 正文语种 en_US
  • 中图分类

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