区块链技术用于商业应用的物联网红外热温度筛选和紫外线消毒灭菌系统的设计和建模

S. Paramasivam, C. Shen, A. Zourmand, Amira Kamil Ibrahim Hassan, A. Alhassan, Abdelwhab Faroug Eltirifl
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引用次数: 6

摘要

冠状病毒在各国之间的传播日益加剧,而且很快就找不到疫苗,这促使受影响国家采取了严格的遏制措施。为了减轻卫生系统的巨大压力;消毒、去污、接触者追踪和隔离是恢复活动的公司必须遵守的一些健康协议,以保护员工不受感染。因此,在不确定性加剧的背景下,该项目利用先进的技术设计并制造了一个智能红外热扫描摄像头(Thermovis-Mi-FRAHT-800)。紫外线- c光谱消毒系统和区块链技术的集成,用于数据共享,管理健康记录和访问控制。本项目使用SketchUp作为3D设计平台。该系统设计了一项预防措施,其中包括3个条件,包括温度测量、消毒和卫生处理过程,以实现自动屏障的打开。总的来说,一个人在行走路径室中花费的时间不到一分钟,因为每个过程需要20到25秒。通过这个计算,我们假设两个人可以在一分钟内消毒,即每小时120人。因此,减少了与潜在感染问题的利益相关者直接接触的监测人员数量。设想,制定这一概念设计将是通过使用当前和未来技术进行适当的感染控制和修改来坚持控制措施的基石。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and Modeling of IoT IR Thermal Temperature Screening and UV Disinfection Sterilization System for Commercial Application using Blockchain Technology
The increasing spread of the coronavirus across countries and with no sight of vaccine uncovered soon has prompted affected countries to impose strict containment measures. In view to ease the enormous strain on health systems; disinfection, decontamination, contact tracking, and isolation are a few health protocols that are to be observed by companies that resumed their activities to protect their employees from being infected. Hence, against a backdrop of heightened uncertainty, this project leverages on the advancement of technology to design and built a smart Infrared thermal scanning with a camera (Thermovis-Mi-FRAHT-800). An Ultraviolet-C spectrum disinfection system and integration of blockchain technology for data sharing, managing health records, and access control. SketchUp used as a 3D design platform for this project. This system designed with a precautionary measure which includes 3 conditions to be met for the automated barrier to be open which include temperature measurement, disinfection, and sanitization processes. Overall, a person spends less than a minute in the walkthrough path chamber as the process takes 20 to 25 seconds each. By this calculation, we assume that 2 people would be able to get disinfected within a minute which comes up to 120 people per hour. Thus, reducing the number of monitoring staffs in direct contact with the stakeholders with potential infection issues. It is envisaged that developing this conceptual design would be the cornerstone in adhering to control measure through appropriate infection control and modification using current and future technologies.
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