Toma Cristian, Alexandru Andrei, Popa Marius, Zamfiroiu Alin
Department of Economic Informatics and Cybernetics, Faculty of Cybernetics, Statistics and Economic Informatics, Bucharest University of Economic Studies, 010552 Bucharest, Romania.
Sensors (Basel). 2019 Aug 2;19(15):3401. doi: 10.3390/s19153401.
Air pollution is a major factor in global heating and an increasing focus is centered on solving this problem. Urban communities take advantage of Information Technology (IT) and communications technologies in order to improve the control of environmental emissions and sound pollution. The aim is to mitigate health threatening risks and to raise awareness in relation to the effects of air pollution exposure. This paper investigates the key issues of a real-time pollution monitoring system, including the sensors, Internet of Things (IoT) communication protocols, and acquisition and transmission of data through communication channels, as well as data security and consistency. Security is a major focus in the proposed IoT solution. All other components of the system revolve around security. The bill of the materials and communications protocols necessary for the designing, development, and deployment of the IoT solution are part of this paper, as well as the security challenges. The paper's proof of concept (PoC) addresses IoT security challenges within the communication channels between IoT gateways and the cloud infrastructure where data are transmitted to. The security implementations adhere to existing guidelines, best practices, and standards, ensuring a reliable and robust solution. In addition, the solution is able to interpret and analyze the collected data by using predictive analytics to create pollution maps. Those maps are used to implement real-time countermeasures, such as traffic diversion in a major city, to reduce concentrations of air pollutants by using existing data collected over a year. Once integrated with traffic management systems-cameras monitoring and traffic lights-this solution would reduce vehicle pollution by dynamically offering alternate routes or even enforcing re-routing when pollution thresholds are reached.
空气污染是全球变暖的一个主要因素,解决这一问题正受到越来越多的关注。城市社区利用信息技术(IT)和通信技术来加强对环境排放和声污染的控制。其目的是降低对健康构成威胁的风险,并提高人们对空气污染暴露影响的认识。本文研究了实时污染监测系统的关键问题,包括传感器、物联网(IoT)通信协议、通过通信渠道的数据采集与传输,以及数据安全和一致性。安全是所提出的物联网解决方案的主要关注点。系统的所有其他组件都围绕安全展开。本文介绍了物联网解决方案设计、开发和部署所需的材料清单和通信协议,以及安全挑战。本文的概念验证(PoC)解决了物联网网关与数据传输到的云基础设施之间通信渠道中的物联网安全挑战。安全实施遵循现有指南、最佳实践和标准,确保解决方案可靠且强大。此外,该解决方案能够通过使用预测分析来解释和分析收集到的数据,以创建污染地图。这些地图用于实施实时应对措施,例如在大城市进行交通疏导,利用一年内收集的现有数据来降低空气污染物浓度。一旦与交通管理系统(摄像头监控和交通信号灯)集成,该解决方案将通过动态提供替代路线甚至在达到污染阈值时强制重新规划路线来减少车辆污染。