IoT-Galvanized pandemic special E-Toilet for generation of sanitized environment

Amit Kumar Gupta, Pushpa Gothwal, D. Goyal, C. Travieso-González
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Abstract

Abstract The entire world is enmeshing the pandemic COVID-19, which affected the public health and it is spread all over the world. Every country’s authority is making more and more efforts towards maintaining the public health as well as mental health and are developing the vaccination to control the COVID-19. As COVID-19 is an infected disease for which a sanitized environment must be chosen at top most priority to prevent infection. Most of the countries are facing the problem of incrementing the infection rate of COVID due to griminess problems. Most healthcare industries are also working to create a sanitized environment with incorporation of the Internet of Things (IoT) which is resulting in the smart health care appliances for generating the sanitized environment. In this paper the researchers have developed an IoT- Galvanized Pandemic Special E-Toilet for generation of sanitized environment which resolves the issues of griminess problem. The proposed architecture has been comprising with three levels of working methodology as Occupancy Check, Auto Flush and Auto control of Appliances using Mobile Application. It is implemented using a raspberry pi board, Arduino Uno as a core unit of the system with interfacing the peripherals: IR sensor, Ultrasonic sensor and HC05 Bluetooth module, servo motor, Relay module, CFL lamp and LED. The proposed architecture has been simulated individually using single piece of sensor, then later assembled all the peripheral together and simulated. The proposed architecture can be used in field of education, industries, corporate offices, multiplexes, hospitals etc.
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物联网镀锌流行病专用电子钱包,用于产生消毒环境
摘要新冠肺炎疫情在全球范围内蔓延,影响了公众健康。每个国家的当局都在为维护公共健康和心理健康做出越来越多的努力,并正在开发疫苗以控制新冠肺炎。由于新冠肺炎是一种感染性疾病,因此必须优先选择消毒环境以防止感染。由于肮脏的问题,大多数国家都面临着新冠肺炎感染率上升的问题。大多数医疗保健行业也在努力创造一个经过消毒的环境,将物联网(IoT)纳入其中,从而产生了用于产生经过消毒环境的智能医疗保健设备。在这篇论文中,研究人员开发了一种物联网镀锌流行病专用电子变压器,用于产生消毒环境,解决了肮脏问题。所提出的体系结构包括三个层次的工作方法,即占用检查、自动冲洗和使用移动应用程序自动控制电器。它使用树莓皮板实现,Arduino Uno作为系统的核心单元,与外围设备接口:IR传感器、超声波传感器和HC05蓝牙模块、伺服电机、继电器模块、CFL灯和LED。所提出的架构已经使用单个传感器单独进行了模拟,然后将所有外围设备组装在一起并进行了模拟。所提出的架构可用于教育、工业、公司办公室、多路复用器、医院等领域。
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CiteScore
3.10
自引率
21.40%
发文量
126
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