基于物联网的医疗环境移动性和安全性支持体系结构

A. Jara, M. A. Zamora, A. Gómez-Skarmeta
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引用次数: 141

摘要

近年来,为老年人和残疾人提供有效和适当的医疗保健问题是与人口老龄化问题相关的一个重要领域。信息通信技术(ICT)的目标是关注医疗环境中的新技术,从而为加快和改善临床过程提供管理。我们的贡献是在医疗环境中引入一种基于物联网(IoT)的方法,以实现与患者、传感器及其周围一切的全球连接。这种全局特性的主要目标是提供上下文感知,使患者的生活更轻松,临床过程更有效。为了实现这一方法,首先开发了一种架构,该架构旨在提供通信,监测和控制的巨大潜力和灵活性。该体系结构包括几种先进的通信技术;其中包括6LoWPAN和RFID/NFC,它们是物联网的基础。此外,该研究还涉及物联网在医疗环境中应用时发生的移动性和安全性相关问题。移动性问题需要在6LoWPAN网络上开发一种协议,以在具有低功耗和低容量的高规格传感器网络中进行。而在RFID/NFC技术中需要支持安全通信,我们的建议是引入一套安全技术和加密SIM卡来对医疗设备的通信进行认证、加密和签名。初步结果表明,通过省略寻址阶段和简化MIPv6协议,减少了移动性协议在切换过程中的时间。除了增加NFC设备进行通信时的安全性外,还增加了加密SIM卡。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Architecture Based on Internet of Things to Support Mobility and Security in Medical Environments
Recently the problem of providing effective and appropriate healthcare to elderly and disable people is an important field in relative to the aging of population problems. The objective of information and communication technologies (ICT) is to focus on the new technologies the medical environments, so that it can provide management to accelerate and improve the clinical process. Our contribution is to introduce an approach based on Internet of things (IoT) in medical environments to achieve a global connectivity with the patient, sensors and everything around it. The main goal of this globality feature is to provide a context awareness to make the patient's life easier and the clinical process more effective. To achieve this approach, firstly has been developed an architecture which has been designed to offer great potential and flexibility of communications, monitoring and control. This architecture includes several advanced communication technologies; among them are 6LoWPAN and RFID/NFC, which are the basis ofthe IoT. Moreover the research deal with the problems related to the mobility and security that happens when IoT is applied in medical environments. The mobility issue requires developing a protocol over 6LoWPAN network to be carried out in sensor networks with high specification related with low power consumption and capacity. While in the RFID/NFC technologies need to support secure communications, our proposal is to introduce a set of security techniques and cryptographic SIM card to authenticate, encrypt and sign the communications with medical devices. The preliminary results showed a reduction of time in the handover process with the protocol for mobility defined, by omitting the stages of addressing and simplifying the MIPv6 protocol. In addition to increase the security in the communications carried out by NFC devices enhanced with the inclusion of cryptographic SIM card.
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