Fostering student competencies and perceptions through artificial intelligence of things educational platform

Sasithorn Chookaew , Pornchai Kitcharoen , Suppachai Howimanporn , Patcharin Panjaburee
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Abstract

The growing demand for artificial intelligence (AI) skills across various sectors has enhanced AI-focused careers and shaped academic exploration in educational institutions. These institutions have been actively developing teaching methods that enhance practical AI applications, particularly through integrating AI with the Internet of Things (IoT), leading to the emergence of the Artificial Intelligence of Things (AIoT). This convergence promises significant advancements in AI education, addressing gaps in structured learning methods for AIoT. This study explored AIoT's application in Smart Farming (SF) and its potential to enrich AI education and sectoral advancements. The AIoT platform was designed for SF simulations, integrating environmental sensing, AI processing, and user-friendly outputs. This platform was implemented with 40 first-year computer science university students in Thailand using a one-group pre-posttest design. This approach transformed theoretical AI concepts into experiential learning through interactive activities, demonstrating AIoT's capability to increase AI conceptual understanding, trigger AI competencies, and promote positive learning perceptions. Therefore, this study presented the results as indicative of the AIoT platform's potential benefits, emphasizing the need for further robust experimental research. This study contributes to educational technology discussions by suggesting improvements in AIoT platform effectiveness and highlighting areas for future investigation.
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通过人工智能物联网教育平台培养学生的能力和感知力
各行各业对人工智能(AI)技能的需求不断增长,促进了以人工智能为重点的职业发展,也影响了教育机构的学术探索。这些机构一直在积极开发能提高人工智能实际应用水平的教学方法,特别是通过将人工智能与物联网(IoT)相结合,促成了人工智能物联网(AIoT)的出现。这种融合有望极大地推动人工智能教育的发展,弥补人工智能物联网结构化学习方法的不足。本研究探讨了 AIoT 在智能农业(SF)中的应用及其丰富人工智能教育和行业进步的潜力。AIoT 平台专为智能农业模拟而设计,集成了环境传感、人工智能处理和用户友好的输出。泰国 40 名计算机科学专业的一年级学生采用单组前后测试设计实施了该平台。这种方法通过互动活动将人工智能理论概念转化为体验式学习,证明了人工智能物联网能够增强对人工智能概念的理解、激发人工智能能力并促进积极的学习感知。因此,本研究提出的结果表明,AIoT 平台具有潜在的优势,强调了进一步开展扎实实验研究的必要性。本研究为教育技术讨论提供了改进人工智能物联网平台有效性的建议,并强调了未来调查的领域。
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来源期刊
CiteScore
16.80
自引率
0.00%
发文量
66
审稿时长
50 days
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