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Fostering Environmental Awareness with Smart IoT Planters in Campuses

机译:在校园中通过智能IoT种植者培养环境意识

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摘要

The decrease in the cost of sensors during the last years, and the arrival of the 5th generation of mobile technology will greatly benefit Internet of Things (IoT) innovation. Accordingly, the use of IoT in new agronomic practices might be a vital part for improving soil quality, optimising water usage, or improving the environment. Nonetheless, the implementation of IoT systems to foster environmental awareness in educational settings is still unexplored. This work addresses the educational need to train students on how to design complex sensor-based IoT ecosystems. Hence, a Project-Based-Learning approach is followed to explore multidisciplinary learning processes implementing IoT systems that varied in the sensors, actuators, microcontrollers, plants, soils and irrigation system they used. Three different types of planters were implemented, namely, hydroponic system, vertical garden, and rectangular planters. This work presents three key contributions that might help to improve teaching and learning processes. First, a holistic architecture describing how IoT ecosystems can be implemented in higher education settings is presented. Second, the results of an evaluation exploring teamwork performance in multidisciplinary groups is reported. Third, alternative initiatives to promote environmental awareness in educational contexts (based on the lessons learned) are suggested. The results of the evaluation show that multidisciplinary work including students from different expertise areas is highly beneficial for learning as well as on the perception of quality of the work obtained by the whole group. These conclusions rekindle the need to encourage work in multidisciplinary teams to train engineers for Industry 4.0 in Higher Education.
机译:过去几年中,传感器成本的下降以及第五代移动技术的到来将极大地受益于物联网(IoT)创新。因此,在新的农艺实践中使用物联网可能是改善土壤质量,优化用水量或改善环境的重要组成部分。尽管如此,仍未探索在教育环境中实施物联网系统以增强环境意识的问题。这项工作满足了培训学生如何设计基于传感器的复杂物联网生态系统的教育需求。因此,遵循基于项目的学习方法来探索实现物联网系统的多学科学习过程,这些过程在所使用的传感器,执行器,微控制器,植物,土壤和灌溉系统中各不相同。实施了三种不同类型的花槽,即水培系统,垂直花园和矩形花槽。这项工作提出了三个关键的贡献,可能有助于改善教学过程。首先,提出了一个整体架构,描述了如何在高等教育环境中实现物联网生态系统。其次,报告了探索多学科团队团队绩效的评估结果。第三,提出了在教育环境中(根据所汲取的经验教训)提高环境意识的替代倡议。评估结果表明,包括来自不同专业领域的学生在内的多学科工作对于学习以及整个团队所获得的工作质量的感知都是非常有益的。这些结论重新激发了需要鼓励跨学科团队的工作来培训高等教育中的工业4.0工程师的必要性。

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