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基于智能卡的物联网远程医疗信息系统高效部署的双因素相互认证方案。

A Smart Card-Based Two-Factor Mutual Authentication Scheme for Efficient Deployment of an IoT-Based Telecare Medical Information System.

机构信息

Department of Electrical Engineering, Hamdard Institute of Engineering and Technology, Hamdard University, Islamabad 44000, Pakistan.

Department of Computer Science, College of Computer and Information Systems, Umm Al-Qura University, Makkah 21955, Saudi Arabia.

出版信息

Sensors (Basel). 2023 Jun 7;23(12):5419. doi: 10.3390/s23125419.

Abstract

The integration of the Internet of Things (IoT) and the telecare medical information system (TMIS) enables patients to receive timely and convenient healthcare services regardless of their location or time zone. Since the Internet serves as the key hub for connection and data sharing, its open nature presents security and privacy concerns and should be considered when integrating this technology into the current global healthcare system. Cybercriminals target the TMIS because it holds a lot of sensitive patient data, including medical records, personal information, and financial information. As a result, when developing a trustworthy TMIS, strict security procedures are required to deal with these concerns. Several researchers have proposed smart card-based mutual authentication methods to prevent such security attacks, indicating that this will be the preferred method for TMIS security with the IoT. In the existing literature, such methods are typically developed using computationally expensive procedures, such as bilinear pairing, elliptic curve operations, etc., which are unsuitable for biomedical devices with limited resources. Using the concept of hyperelliptic curve cryptography (HECC), we propose a new solution: a smart card-based two-factor mutual authentication scheme. In this new scheme, HECC's finest properties, such as compact parameters and key sizes, are utilized to enhance the real-time performance of an IoT-based TMIS system. The results of a security analysis indicate that the newly contributed scheme is resistant to a wide variety of cryptographic attacks. A comparison of computation and communication costs demonstrates that the proposed scheme is more cost-effective than existing schemes.

摘要

物联网(IoT)和远程医疗信息系统(TMIS)的集成使患者无论身在何处或处于哪个时区,都能获得及时便捷的医疗服务。由于互联网是连接和数据共享的关键枢纽,其开放性带来了安全和隐私问题,因此在将这项技术整合到当前全球医疗保健系统时需要加以考虑。网络犯罪分子将 TMIS 作为目标,因为它包含大量敏感的患者数据,包括病历、个人信息和财务信息。因此,在开发值得信赖的 TMIS 时,需要采取严格的安全措施来应对这些问题。一些研究人员提出了基于智能卡的相互认证方法来防止此类安全攻击,这表明这将是具有物联网的 TMIS 安全的首选方法。在现有文献中,此类方法通常使用计算成本高昂的过程来开发,例如双线性配对、椭圆曲线运算等,这些方法不适合资源有限的生物医学设备。我们使用超椭圆曲线密码学(HECC)的概念,提出了一种新的解决方案:基于智能卡的双因素相互认证方案。在这个新方案中,利用 HECC 的最精细属性,如紧凑的参数和密钥大小,来提高基于物联网的 TMIS 系统的实时性能。安全分析的结果表明,新提出的方案能够抵御各种密码攻击。计算和通信成本的比较表明,所提出的方案比现有方案更具成本效益。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/abac/10305516/228bdd07d4a1/sensors-23-05419-g001.jpg

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