Wahid Mirza Anas, Bukhari Syed Hashim Raza, Daud Ahmad, Awan Saeed Ehsan, Raja Muhammad Asif Zahoor
Department of Electrical and Computer Engineering, COMSATS University Islamabad, Attock Campus, Islamabad, Pakistan.
Department of Electrical and Computer Engineering, Air University Islamabad, Islamabad, Pakistan.
J Ambient Intell Humaniz Comput. 2023;14(6):7381-7398. doi: 10.1007/s12652-022-04446-z. Epub 2022 Oct 20.
The world we live in has been taken quite surprisingly by the outbreak of a novel virus namely SARS-CoV-2. COVID-19 i.e. the disease associated with the virus, has not only shaken the world economy due to enforced lockdown but has also saturated the public health care systems of even most advanced countries due to its exponential spread. The fight against COVID-19 pandemic will continue until majority of world's population get vaccinated or herd immunity is achieved. Many researchers have exploited the Artificial intelligence (AI) knacks based IoT architecture for early detection and monitoring of potential COVID-19 cases to control the transmission of the virus. However, the main cause of the spread is that people infected with COVID-19 do not show any symptoms and are asymptomatic but can still transmit virus to the masses. Researcher have introduced contact tracing applications to automatically detect contacts that can be infected by the index case. However, these fully automated contact tracing apps have not been accepted due to issues like privacy and cross-app compatibility. In the current study, an IoT based COVID-19 detection and monitoring system with semi-automated and improved contact tracing capability namely COVICT has been presented with application of real-time data of symptoms collected from individuals and contact tracing. The deployment of COVICT, the prediction of infected persons can be made more effective and contaminated areas can be identified to mitigate the further propagation of the virus by imposing Smart Lockdown. The proposed IoT based architecture can be quite helpful for regulatory authorities for policy making to fight COVID-19.
我们生活的世界被一种新型病毒——严重急性呼吸综合征冠状病毒2(SARS-CoV-2)的爆发搞得措手不及。2019冠状病毒病(COVID-19),即与该病毒相关的疾病,不仅因强制封锁动摇了世界经济,还因其指数级传播使即使是最发达国家的公共卫生保健系统不堪重负。对抗COVID-19大流行的斗争将持续到世界上大多数人口接种疫苗或实现群体免疫。许多研究人员利用基于人工智能(AI)技术的物联网架构来早期检测和监测潜在的COVID-19病例,以控制病毒传播。然而,传播的主要原因是感染COVID-19的人没有任何症状,是无症状感染者,但仍可将病毒传播给大众。研究人员推出了接触者追踪应用程序,以自动检测可能被索引病例感染的接触者。然而,由于隐私和跨应用兼容性等问题,这些全自动接触者追踪应用程序并未被接受。在当前的研究中,提出了一种基于物联网的COVID-19检测和监测系统,即COVICT,它具有半自动和改进的接触者追踪能力,并应用了从个人收集的症状实时数据和接触者追踪。通过部署COVICT,可以更有效地预测感染者,并识别受污染区域,通过实施智能封锁来减轻病毒的进一步传播。所提出的基于物联网的架构对监管机构制定抗击COVID-19的政策可能会有很大帮助。