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SEA : A Secure and Efficient Authentication and Authorization Architecture for IoT-Based Healthcare Using Smart Gateways

机译:SEA:使用智能网关的基于物联网的医疗保健的安全高效的身份验证和授权架构

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摘要

In this paper, a secure and efficient authentication and authorization architecture for IoT-based healthcare is developed. Security and privacy of patients’ medical data are crucial for the acceptance and ubiquitous use of IoT in healthcare. Secure authentication and authorization of a remote healthcare professional is the main focus of this work. Due to resource constraints of medical sensors, it is infeasible to utilize conventional cryptography in IoT-based healthcare. In addition, gateways in existing IoTs focus only on trivial tasks without alleviating the authentication and authorization challenges. In the presented architecture, authentication and authorization of a remote end-user is done by distributed smart e-health gateways to unburden the medical sensors from performing these tasks. The proposed architecture relies on the certificate-based DTLS handshake protocol as it is the main IP security solution for IoT. The proposed authentication and authorization architecture is tested by developing a prototype IoT-based healthcare system. The prototype is built of a Pandaboard, a TI SmartRF06 board and WiSMotes. The CC2538 module integrated into the TI board acts as a smart gateway and the WisMotes act as medical sensor nodes. The proposed architecture is more secure than a state-of-the-art centralized delegation-based architecture because it uses a more secure key management scheme between sensor nodes and the smart gateway. Furthermore, the impact of DoS attacks is reduced due to the distributed nature of the architecture. Our performance evaluation results show that compared to the delegation-based architecture, the proposed architecture reduces communication overhead by 26% and communication latency from the smart gateway to the end-user by 16%.
机译:本文针对基于物联网的医疗保健,开发了一种安全高效的身份验证和授权架构。患者医疗数据的安全性和隐私性对于医疗保健中物联网的接受和广泛使用至关重要。远程医疗专业人员的安全身份验证和授权是这项工作的主要重点。由于医疗传感器的资源限制,在基于IoT的医疗保健中使用常规加密是不可行的。此外,现有物联网中的网关仅专注于琐碎的任务,而不会减轻身份验证和授权挑战。在提出的体系结构中,远程最终用户的身份验证和授权由分布式智能电子医疗网关完成,以减轻医疗传感器执行这些任务的负担。提议的架构依赖于基于证书的DTLS握手协议,因为它是IoT的主要IP安全解决方案。通过开发基于IoT的原型医疗保健系统,对提出的身份验证和授权架构进行了测试。该原型由Pandaboard,TI SmartRF06板和WiSMotes构成。集成到TI板上的CC2538模块充当智能网关,而WisMotes充当医疗传感器节点。所提出的体系结构比最新的基于集中委托的体系结构更安全,因为它在传感器节点和智能网关之间使用了更安全的密钥管理方案。此外,由于体系结构的分布式性质,减少了DoS攻击的影响。我们的性能评估结果表明,与基于委托的体系结构相比,该体系结构将通信开销减少了26%,从智能网关到最终用户的通信延迟减少了16%。

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