ieee的一项epic倡议:圣阿尔班学院的学习者和比勒陀利亚大学的学生通过空气质量微传感寻求地球观测解决方案

S. Sinha, Phumudzo R. Bebwele, C. Mouton
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摘要

本文介绍了一种用于地球观测的基于微传感器的空气质量监测系统的设计和实现。传统上,空气质量监测系统仅限于集中或静态站点,因此只能获得有限数量的数据来估计有害空气污染物。本文设计的系统是为了改善传统空气质量监测系统的不足。该系统使用无线传感器网络(wsn)节点感知并将选定的环境空气质量参数传输到传感器接收器,传感器接收器将这些参数转发到数据终端,完成最终数据处理并设置用户界面。参与设计的项目开发团队包括比勒陀利亚大学的一名大四本科生和St Alban's College(位于南非比勒陀利亚的一所男子高中)的八名11年级中学生。本科最后一年的学生根据第一性原理设计了一个类似的系统,而中学学习者使用了现成的教育空气质量微传感器组件。学习者使用基于android的输入/输出传感器节点与手机通信,手机管理上传到谷歌驱动器文件夹。作为次要成果,通过这项工作开发的教育空气质量微传感器系统将作为一种教育工具,增进公众对空气质量的了解,包括在南非通过一项新的国家空气质量法案。本项目是IEEE社区服务工程项目(EPICS)的一部分。
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An EPICS-in-IEEE initiative: Learners of St Alban's College and students of the University of Pretoria seek earth observation solutions through air-quality microsensing
This paper describes the design and implementation of a microsensor-based air-quality monitoring system intended for earth observations. Traditionally, air-quality monitoring systems are limited to centralized or static sites and thus obtain a limited amount of data for estimation of hazardous air pollutants. The system in this paper was designed to improve the shortcomings experienced by traditional air-quality monitoring systems. The system uses the wireless sensor network (WSNs) nodes to sense and transmit selected ambient air-quality parameters to a sensor sink, which relays these parameters to a data terminal where final data processing is completed and the user interface is situated. The project development team that was involved in the design comprised a senior undergraduate student at the University of Pretoria and a group of eight grade-11 secondary-school learners from St Alban's College, a boys' high school situated in Pretoria, South Africa. While the undergraduate final-year student designed an analogous system by first principles, the secondary-school learners used educational air-quality microsensor off-the-shelf components. The learners used an Android-based input/output sensor node to communicate to a mobile phone, which managed the upload to a Google drive folder. As a secondary outcome, the educational air-quality microsensor systems developed through this undertaking would serve as an educational tool for improving the public understanding of air-quality, including a new national air-quality act in South Africa. This project was completed as an endeavor of Engineering Projects In Community Service (EPICS) in IEEE.
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