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Development of a Low-Cost Robotics Platform that Facilitates the Enhancement of Microcomputer Structures and Interfacing Learning Objectives.

机译:低成本机器人平台的开发,该平台有助于增强微计算机的结构并实现学习目标的接口。

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摘要

Robotics has become a common educational tool to teach basic concepts in mathematics, science, engineering, technology, world affairs, and much more. Programs such as For Inspiration and Recognition of Science and Technology (FIRST) robotics are demonstrating that the recipe for student inspiration and learning involves robotics, problem solving, teamwork, and friendly competition. The successes of FIRST robotics programs and results from universities that have integrated robotics platforms into their curriculum provide evidence that infusing robotics platforms and curriculum into engineering departments better their capabilities and increase attractiveness to current and future students. This effort details the design and development of a low-cost robotics platform and seamless set of supporting curriculum. The platform and seamless curriculum set is implemented in the West Virginia University's Lane Department of Computer Science and Electrical Engineering (LCSEE) microcomputer structures and interfacing laboratory, an undergraduate computer engineering course. The results provide detailed information on the robotics platform as well as detailed information on the seamless set of modules that make up the curriculum. The results demonstrate that a subset of students become significantly more motivated and are more willing to work additional hours to improve upon their design as compared to traditional laboratory sessions. These results are significant and demonstrate that robotics and seamless curriculum sets provide a solid platform to introduce computer engineering concepts that inspire and motivate students.
机译:机器人技术已经成为教授数学,科学,工程,技术,世界事务等基本概念的常用教育工具。诸如“科学技术的灵感与认可”(FIRST)机器人之类的程序表明,启发和学习学生的秘诀涉及机器人,解决问题,团队合作和友好竞争。 FIRST机器人计划的成功以及将机器人平台集成到其课程中的大学的成果提供了证据,表明将机器人平台和课程注入工程系可以更好地发挥其功能并增加对当前和未来学生的吸引力。这项工作详细介绍了低成本机器人平台的设计和开发以及一系列无缝的支持课程。该平台和无缝课程集在西弗吉尼亚大学的莱恩计算机科学与电气工程系(LCSEE)微型计算机结构和接口实验室(本科计算机工程课程)中实施。结果提供了有关机器人平台的详细信息,以及构成课程的无缝模块集的详细信息。结果表明,与传统的实验室课程相比,一部分学生的动机明显增强,并且更愿意花更多的时间来改善他们的设计。这些结果非常重要,表明机器人技术和无缝课程集为介绍可以激发和激励学生的计算机工程概念提供了坚实的平台。

著录项

  • 作者

    Morris, Justin Ryan.;

  • 作者单位

    West Virginia University.;

  • 授予单位 West Virginia University.;
  • 学科 Computer engineering.;Electrical engineering.
  • 学位 M.S.C.S.
  • 年度 2012
  • 页码 180 p.
  • 总页数 180
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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