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Construction of Artificial Intelligence Mechanical Laboratory with Engineering Education Based on CDIO Teaching Strategies

机译:基于CDIO教学策略的工程教育人工智能机械实验室建设。

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Artificial Intelligence (AI) education breaks a new ground with the recent approaches to let students understand how people being activated by their thinking rule. In the beginning of systematic instruction of AI, the organization should be lateral and subjacent supported with students and teachers. To construct the Artificial Intelligence mechanical laboratory (AIML) may require a vibrant community of inventive problem solvers due to the underrepresented populations of engineering students in the field of AI, and the applications of different science field for the AIML are also needed. In this paper, we introduce the way to correlate the research and teaching process for the construction of the AIML based on the CDIO teaching philosophy. During the AIML building progress, the construction indicators and design strategies may help the students to improve their learning initiative. Through the joining and support of experimental equipment, students' academic knowledge can be accelerated and more certain for the direction of applications. The close combination of the experimental teaching and practical ability with CDIO project-based learning are consistently found in good practices of active learning for the engineering education.
机译:人工智能(AI)教育用最新的方法开辟了新的领域,让学生了解人们如何被他们的思维规则所激活。在AI的系统教学开始之初,组织应在学生和老师的支持下进行横向和下层支持。由于AI领域的工程专业学生人数不足,因此构建人工智能机械实验室(AIML)可能需要一个充满活力的发明者解决方案社区,并且还需要AIML在不同科学领域的应用。在本文中,我们介绍了基于CDIO教学理念将AIML构建的研究与教学过程相关联的方法。在AIML的建设过程中,建设指标和设计策略可能会帮助学生提高学习积极性。通过实验设备的加入和支持,可以提高学生的学术知识,并为应用方向提供更大的确定性。实验教学和实践能力与CDIO基于项目的学习的紧密结合始终在工程教育的主动学习的良好实践中被发现。

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