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Tracking the Covid zones through geo-fencing technique

机译:通过地理围栏技术跟踪Covid区

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Purpose - Because of the outbreak of Covid 19, the entire world is thinking of new strategies, preventive measures to safeguard the human life from the widespread of the pandemic. The areas where people are affected are marked as containment zones and people are not allowed to exit out of those areas. Similarly, new people are not allowed to enter inside those areas. Hence, the purpose of this paper is to propose a methodology to track the Covid zones, to enhance and tighten the security measures. A geo-fence is created for the containment zone. The person who enters or exits out of that particular zone will be monitored and alert message will be sent to that person's mobile. Design/methodology/approach - After tracking the location of a suspicious individual, the geo-fenced layer is mapped in the area and then the virtual perimeter is used for further trapping process. This geo-fenced layer can be viewed by the citizens as soon as it is updated by the Covid monitoring team. The geo-fencing is a concept of building a virtual perimeter area. This virtual perimeter monitoring system helps in monitoring the containment zones effectively. It reduces operational costs by using an automated system based on wireless infrastructure. It also alerts the authorities immediately to catch the violators. Thus, it helps to speed up the process of inspecting the containment zones and monitoring the individuals who violate the rules given by government. Findings - The proposed methodologies will be an effective way to track the Covid's communal spread. But the workflow of the system demands the required data sets and permission in legal manner to set up the environment that maintains the constitutional law and order in practice. The application developed was a prototype to display how it works if the required data sets are provided by the government There are several tracking models that are released across the world such as Aarogya setu (India), Trace together (Singapore) and Hagmen (Israel). All these models are based on Bluetooth proximity identification; though Bluetooth proximity identification is helpful for high range in a short distance, the privacy concern is debatable one. Using modern technology, it is so easy to crack the individual gadgets and with Bluetooth enabling it makes things even worse. Thus, it is important to maintain the tracking a safer and secure one, and another issue with those Bluetooth-based applications is that tracking can be done only if the user enabled the Bluetooth option, if not the entire functioning would become a mess. The proposed methodology of tracking without Bluetooth will ensure data security also. Originality/value - This was developed as a project by our third-year students of the Department of Information Technology of our college.
机译:目的 - 由于爆发了Covid 19,整个世界正在考虑新的战略,预防措施,以保护人类生活中的大流行普遍存在。人们受到影响的地区被标记为遏制区域,人们不允许退出这些地区。同样,新人不得进入这些地区内。因此,本文的目的是提出一种跟踪Covid区的方法,以增强和收紧安全措施。为遏制区创建了地理围栏。将监控或退出该特定区域的人员将被监控,并将发送给该​​人的移动设备。设计/方法/方法 - 跟踪可疑单独的位置后,地理围栏层映射在该区域中,然后将虚拟周长用于进一步捕获过程。只要由Covid监控团队更新,公民可以通过公民查看此地理围栏层。地理围栏是构建虚拟周边地区的概念。此虚拟周长监控系统有助于有效地监控容纳区域。它通过使用基于无线基础架构的自动化系统来降低运营成本。它还提醒当局立即抓住违规者。因此,它有助于加快检查遏制区域并监测违反政府规则的个人的过程。调查结果 - 拟议的方法将是跟踪Covid的公共蔓延的有效途径。但系统的工作流程需要法律方式所需的数据集和许可,以建立维持宪法法的环境和在实践中的顺序。该应用程序开发的是一个原型,如果政府提供所需的数据集,那么如果政府提供所需的数据集,那么在世界各地发布的轨迹模型,如Aarogya Setu(印度),追踪(新加坡)和Hagmen(以色列) 。所有这些模型都基于蓝牙邻近识别;虽然蓝牙近距离识别在短距离中有用高范围,但隐私问题是借方的。使用现代技术,很容易破解个别小工具,并使用蓝牙使其变得更糟。因此,重要的是要维护更安全和安全的跟踪和安全,并且只有当用户启用蓝牙选项时,才能执行跟踪的另一个问题,如果不是整个功能将变得混乱。如果没有蓝牙的跟踪方法,也会确保数据安全性。原创性/价值 - 这是由我们学院信息技术部的第三年级学生开发为项目。

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