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F2CDM: Internet of Things for Healthcare Network Based Fog-to-Cloud and Data-in-Motion Using MQTT Protocol

机译:F2CDM:使用MQTT协议的医疗保健网络基于雾到云和数据的内容互联网

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Internet of Things (IoT) evolves very rapidly over time, since everything such as sensors/actuators linked together from around the world with use of evolution of ubiquitous computing through the Internet. These devices have a unique IP address in order to communicate with each other and transmit data with features of wireless technologies. Fog computing or so called edge computing brings all Cloud features to embedded devices at edge network and adds more features to servers like pre-store data of Cloud, fast response, and generate overhasty users reporting. Fog mediates between Cloud and IoT devices and thus enables new types of computing and services. The future applications take the advantage of combing the two concepts Fog and Cloud in order to provide low delay Fog-based and high capacity of storage Cloud-based. This paper proposes an IoT architecture for healthcare network based on Fog to Cloud and Data in Motion (F2CDM). The proposed architecture is designed and implemented over three sites: Site 1 contains the embedded devices layer, Site 2 consists of the Fog network layer, while Site 3 consists of the Cloud network. The Fog layer is represented by a middleware server in Al-Nahrain University with temporary storage such that the data lives inside for 30 min. During this time, the selection of up-normality in behavior is send to the Cloud while the rest of the data is wiped out. On the other hand, the Cloud stores all the incoming data from Fog permanently. The F2CDM works using Message Queue Telemetry Transport (MQTT) for fast response. The results show that all data can be monitored from the Fog in real time while the critical data can be monitored from Cloud. In addition, the response time is evaluated using traffic generator called Tsung. It has been found that the proposed architecture reduces traffic on Cloud network and provides better data analysis.
机译:事物互联网(物联网)随着时间的推移而发展,自从通过互联网上无处不在的计算的演变,所有这样的传感器/执行器都与世界各地联系在一起。这些设备具有唯一的IP地址,以便彼此通信,并通过无线技术的特征传输数据。雾计算或所谓的边缘计算将所有云特征带到Edge Network的嵌入式设备中,并为服务器添加更多功能,如云,快速响应和生成过度用户报告。雾在云和物联网设备之间调解,因此启用新型的计算和服务。未来的应用程序利用梳理两个概念雾和云的优势,以便提供基于低延迟的雾和高容量的基于存储云。本文提出了一种基于雾到云和运动中的数据(F2CDM)的医疗网络的IoT架构。在三个站点上设计和实现了所提出的体系结构:站点1包含嵌入式设备层,站点2由FOG网络层组成,而网站3由云网络组成。雾层由跨境内大学的中间件服务器表示,临时存储,使数据在内部居住30分钟。在此期间,在行为中选择up-ordality在云中发送到云,而剩余的数据被删除。另一方面,云将永久存储来自雾的所有传入数据。 F2CDM使用消息队列遥测传输(MQTT)进行快速响应。结果表明,可以在云中实时从雾监测所有数据,而可以从云监视关键数据。此外,使用称为Tsung的交通发生器评估响应时间。已经发现,所提出的架构减少了云网络上的流量并提供了更好的数据分析。

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