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基于区块链的警报系统进行决策的自动感染风险评估 (AIRa):代表性建筑中的案例研究。

Automated infection risks assessments (AIRa) for decision-making using a blockchain-based alert system: A case study in a representative building.

机构信息

Department of Manufacturing and Civil Engineering, Norwegian University of Science and Technology, Gjøvik, Norway.

Department of Manufacturing and Civil Engineering, Norwegian University of Science and Technology, Gjøvik, Norway.

出版信息

Environ Res. 2023 Jan 1;216(Pt 3):114663. doi: 10.1016/j.envres.2022.114663. Epub 2022 Oct 29.

Abstract

Indoor air quality (IAQ) is an important parameter in protecting the occupants of an indoor environment. Previous studies have shown that an indoor environment with poor ventilation increases airborne virus transmission. Existing research has concluded that high ventilation rates can reduce the risk of individuals in indoor environments being infected. However, most existing ventilation systems are designed to be efficient under non-pandemic conditions. Ultimately, indoor environments will become hotspots for the transmission of airborne viruses. Current infection risk assessments can estimate virus transmission via airborne routes, but with limited information sharing among stakeholders. Our own research did not identify any systems that integrate risk assessments with smart sensors in order to support information sharing with experts in indoor environments in their decision-making process. To fill this gap, we designed a blockchain-based prototype (AIRa) that integrates CO smart sensor data with infection risk assessments from a post-pandemic perspective. This system generates two types of alerts: (1) P-Alert and (2) R0-Alert for decision-making by building owners, such as increasing the ventilation rate or track and trace, as needed. AIRa shows various benefits over three existing infection-control alert systems. Our solution stores and shares information such as the timestamp and room number, instead of storing building user's personal information. Our approach does not require a QR code to be scanned or a mobile app to be downloaded in order to enable track and trace. However, AIRa is still an early prototype for evaluating the risks of airborne virus transmission in smart building environments. Multidisciplinary knowledge and technological research will be vital in formulating different alerts in the future.

摘要

室内空气质量 (IAQ) 是保护室内环境居住者的一个重要参数。之前的研究表明,通风不良的室内环境会增加空气传播病毒的传播。现有研究得出的结论是,高通风率可以降低室内环境中个体感染的风险。然而,大多数现有的通风系统都是在非大流行条件下设计的,最终室内环境将成为空气传播病毒的热点。目前的感染风险评估可以估计通过空气传播的病毒传播,但利益相关者之间的信息共享有限。我们自己的研究没有发现任何将风险评估与智能传感器集成的系统,以支持室内环境专家在决策过程中共享信息。为了填补这一空白,我们设计了一个基于区块链的原型 (AIRa),该原型从大流行后的角度将 CO 智能传感器数据与感染风险评估集成在一起。该系统生成两种警报:(1) P-Alert 和 (2) R0-Alert,供建筑物所有者(如增加通风率或根据需要进行跟踪和溯源)做出决策。AIRa 在三个现有感染控制警报系统中显示出了各种优势。我们的解决方案存储和共享信息,如时间戳和房间号,而不是存储建筑物用户的个人信息。我们的方法不需要扫描 QR 码或下载移动应用程序即可实现跟踪和溯源。然而,AIRa 仍然是评估智能建筑环境中空气传播病毒传播风险的早期原型。多学科知识和技术研究对于制定未来的不同警报至关重要。

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