基于物联网的雾云长者医疗远程监控平台

A. Alexandru, Dora Coardos, E. Tudora
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引用次数: 9

摘要

在人口快速老龄化及其对医疗保健和援助需求不断增加的背景下,基于物联网(IoT)的智能应用程序的普遍使用可以减轻随之而来的社会负担。老年人家中连接的传感器和设备产生大量关于他们和他们日常活动的数据。物联网和大数据分析(BDA)是获取知识和支持的重要手段,通过增加信息和通信技术(ICT)的作用来实现这一目标,以改善老年人的生活条件。物联网分析可以帮助个性化应用程序,使老年人和不断增长的行业受益,这些行业需要根据消费者的情况调整其产品。本文提出了一个新的平台,可以对老年人智能住宅的物联网捕获数据进行创新分析。为了提供数据驱动的服务,并管理在线和离线数据处理、存储和分析所需资源的复杂性和供应,提出了基于雾节点和云系统的解决方案。重点介绍了平台体系结构的需求和设计。我们提出了一种基于雾计算节点和云计算的平台架构,可以对物联网系统产生的大数据进行高效的近实时处理,为云提供洞察和数据处理和分析设施。这种集成设计通过解决云的延迟问题,对时间敏感型应用程序具有重要影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
IoT-Based Healthcare Remote Monitoring Platform for Elderly with Fog and Cloud Computing
In the context of a fast aging population and of its increasing need for healthcare and assistance, ubiquitous usage of Internet of Things (IoT)-based smart applications can mitigate the consequential social burden. Connected sensors and devices inside the seniors' home produce a significant amount of data about them and their daily activities. IoT and Big Data Analytics (BDA) are an important mean to derive knowledge and support for improving the life conditions for the older adults by increasing the role of Information and Communication Technology (ICT) for accomplish this goal. IoT analytics can aid in personalizing applications that benefit both elderly people and the ever-growing industries that need adapt their offer to the consumer's profiles. This paper presents a new platform that enables innovative analytics on IoT captured data from smart residences of elderly people. A solution based on the use of fog nodes and cloud system is suggested in order to afford data-driven services and to manage the complexity and provision of the necessary resources for online and offline data processing, storage, and analysis. The requirements and the design of the platform architecture are underlined. We propose an architecture of a platform based on fog computing nodes coupled with cloud computing that offers an efficient near real time processing of the big data resulted from IoT system that provides insights and data processing and analysis facilities into cloud. This integrated design has an important impact on time sensitive applications by addressing the latency issues of cloud.
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