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Sensor communication in Smart cities and regions: An efficient IoT-based remote health monitoring system

机译:智慧城市和地区中的传感器通信:基于物联网的高效远程健康监控系统

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摘要

Recent advances in Information and Communication Technology (ICT), especially those related to the Internet of Things (IoT), are facilitating smart regions. Among many services that a smart region can offer, remote health monitoring is a typical application of IoT paradigm. It offers the ability to continuously monitor and collect health-related data from a person, and transmit the data to a remote entity (for example, a healthcare service provider) for further processing and knowledge extraction. An IoT-based remote health monitoring system can be beneficial in rural areas belonging to the smart region where people have limited access to regular healthcare services. The same system can be beneficial in urban areas where hospitals can be overcrowded and where it may take substantialtime to avail healthcare. However, this system may generate a large amount of data. In order to realize an efficient IoT-based remote health monitoring system, it is imperative to study the network communication needs of such a system; in particular the bandwidth requirements and the volume of generated data. The thesis studies a commercial product for remote health monitoring in Skellefteå, Sweden. Based on the results obtained via the commercial product, the thesis identified the key network-related requirements of a typical remote health monitoring system in terms of real-time event update, bandwidth requirements and data generation. Furthermore, the thesis has proposed an architecture called IReHMo - an IoT-based remote health monitoring architecture. This architectureallows users to incorporate several types of IoT devices to extend the sensing capabilities of the system. Using IReHMo, several IoT communication protocols such as HTTP, MQTT and CoAP has been evaluated and compared against each other. Results showed that CoAP is the most efficient protocol to transmit small size healthcare data to the remote servers. The combination of IReHMo and CoAP significantly reduced the required bandwidth as well as the volume of generated data (up to 56 percent) compared to the commercial product. Finally, the thesis conducted a scalability analysis, to determine the feasibility of deploying the combination of IReHMo and CoAP in large numbers in regions in north Sweden.
机译:信息和通信技术(ICT)的最新进展,尤其是与物联网(IoT)相关的进展,正在促进智慧区域的发展。在智能区域可以提供的许多服务中,远程健康监控是物联网范例的典型应用。它提供了连续监视和收集来自人的与健康相关的数据,并将数据传输到远程实体(例如,医疗服务提供商)进行进一步处理和提取知识的能力。基于IoT的远程健康监控系统在属于智能区域的农村地区可能是有益的,那里的人们无法获得常规医疗服务。在医院人满为患且可能需要大量时间才能获得医疗保健的城市地区,相同的系统可能会有所帮助。但是,此系统可能会生成大量数据。为了实现高效的基于物联网的远程健康监控系统,必须研究此类系统的网络通信需求。特别是带宽要求和生成的数据量。本文研究了一种在瑞典Skellefteå进行远程健康监测的商业产品。基于通过商业产品获得的结果,论文从实时事件更新,带宽要求和数据生成方面确定了典型远程健康监控系统与网络相关的关键要求。此外,本文提出了一种称为IReHMo的架构-一种基于IoT的远程健康监控架构。这种架构使用户可以结合多种类型的IoT设备来扩展系统的传感功能。使用IReHMo,已评估并比较了几种IoT通信协议,例如HTTP,MQTT和CoAP。结果表明,CoAP是将小型医疗保健数据传输到远程服务器的最有效协议。与商业产品相比,IReHMo和CoAP的结合显着减少了所需的带宽以及生成的数据量(高达56%)。最后,本文进行了可扩展性分析,以确定在瑞典北部地区大量部署IReHMo和CoAP组合的可行性。

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    Ngo Manh Khoi;

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  • 年度 2015
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