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An Architecture for Fog Computing Enabled Emergency Response and Disaster Management System (ERDMS)

机译:雾计算的架构启用了应急响应和灾难管理系统(ERDMS)

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For the Internet of Things (IoT), the cloud computing plays an important role by offering storage, management, and processing of a large amount of data on the central remote server. Due to the large volume of data, the different operations performed on the data results in the increased response and processing time. This is where Fog Computing comes into play. Fog computing provides services at the edge of the network. It offers many advantages such as low latency, geographical distribution, mobility support, real-time interaction, heterogeneity, interoperability, etc. The purpose of this research is to leverage these advantages to design a low-cost and efficient emergency responder and disaster management system. Response time will be reduced with the help of fog computing by performing computation at the edge device (fog node). Cost of the overall system will be reduced by utilizing the sensors and computing capabilities of Android devices. The aim of this research is to develop an efficient, low-cost emergency response and disaster management system architecture which provides lower latency as compared to the central cloud-based system. The main features of Emergency Response and Disaster Management System (ERDMS) are: identifying an emergency event; broadcasting the event-related information; notifying hospitals, ambulance, and concerned personnel; creating, and executing an action plan.
机译:对于物联网(IOT),云计算通过提供存储,管理和在中央远程服务器上的大量数据的处理来扮演重要作用。由于数据量大,对数据执行的不同操作导致增加的响应和处理时间。这是雾计算发挥作用的地方。雾计算在网络边缘提供服务。它提供了许多优点,如低延迟,地理分布,移动支持,实时相互作用,异质性,互操作性等。本研究的目的是利用这些优势来设计低成本和高效的紧急响应者和灾害管理系统。通过在边缘设备(FOG节点)上执行计算,雾计算将减少响应时间。通过利用Android设备的传感器和计算能力,将降低整个系统的成本。该研究的目的是开发一种高效,低成本的应急和灾害管理系统架构,与基于中央云的系统相比,提供更低的延迟。紧急响应和灾害管理系统(ERDMS)的主要特征是:识别紧急事件;广播与事件相关的信息;通知医院,救护车和有关人员;创建和执行行动计划。

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