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基于混沌映射的具有隐私保护功能的远程医疗认证安全框架。

Chaotic-map based authenticated security framework with privacy preservation for remote point-of-care.

作者信息

Deebak B D, Al-Turjman Fadi, Nayyar Anand

机构信息

School of Computer Science and Engineering, Vellore Institute of Technology, Vellore, 632014 India.

Research Center for AI and IoT, Near East University, Nicosia, Mersin 10, Turkey.

出版信息

Multimed Tools Appl. 2021;80(11):17103-17128. doi: 10.1007/s11042-020-10134-x. Epub 2020 Nov 12.


DOI:10.1007/s11042-020-10134-x
PMID:33204211
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7659916/
Abstract

The challenge of COVID-19 has become more prevalent across the world. It is highly demanding an intelligent strategy to outline the precaution measures until the clinical trials find a successful vaccine. With technological advancement, Wireless Multimedia Sensor Networks (WMSNs) has extended its significant role in the development of remote medical point-of-care (RM-PoC). WMSN is generally located on a communication device to sense the vital signaling information that may periodically be transmitted to remote intelligent pouch This modern remote system finds a suitable professional system to inspect the environment condition remotely in order to facilitate the intelligent process. In the past, the RM-PoC has gained more attention for the exploitation of real-time monitoring, treatment follow-up, and action report generation. Even though it has additional advantages in comparison with conventional systems, issues such as security and privacy are seriously considered to protect the modern system information over insecure public networks. Therefore, this study presents a novel Single User Sign-In (SUSI) Mechanism that makes certain of privacy preservation to ensure better protection of multimedia data. It can be achieved over the negotiation of a shared session-key to perform encryption or decryption of sensitive data during the authentication phase. To comply with key agreement properties such as appropriate mutual authentication and secure session key-agreement, a proposed system design is incorporated into the chaotic-map. The above assumption claims that it can not only achieve better security efficiencies but also can moderate the computation, communication, and storage cost of some intelligent systems as compared to elliptic-curve cryptography or RSA. Importantly, in order to offer untraceability and user anonymity, the RM-PoC acquires dynamic identities from proposed SUSI. Moreover, the security efficiencies of proposed SUSI are demonstrated using informal and formal analysis of the real-or-random (RoR) model. Lastly, a simulation study using NS3 is extensively conducted to analyze the communication metrics such as transmission delay, throughput rate, and packet delivery ratio that demonstrates the significance of the proposed SUSI scheme.

摘要

新冠疫情的挑战在全球范围内愈发普遍。在临床试验找到成功的疫苗之前,制定预防措施急需一个明智的策略。随着技术进步,无线多媒体传感器网络(WMSN)在远程医疗即时护理(RM-PoC)的发展中发挥了重要作用。WMSN通常安装在通信设备上,用于感知重要的信号信息,并定期将其传输到远程智能设备。这个现代远程系统能找到合适的专业系统来远程检测环境状况,以促进智能化进程。过去,RM-PoC因实时监测、治疗跟进和生成行动报告而备受关注。尽管与传统系统相比它有诸多优势,但在通过不安全的公共网络保护现代系统信息时,安全和隐私等问题仍需认真考虑。因此,本研究提出了一种新颖的单用户登录(SUSI)机制,以确保隐私保护,从而更好地保护多媒体数据。这可以通过协商共享会话密钥来实现,以便在认证阶段对敏感数据进行加密或解密。为了符合诸如适当的相互认证和安全会话密钥协商等密钥协商属性,一个提议的系统设计被纳入混沌映射。上述假设表明,与椭圆曲线密码学或RSA相比,它不仅能实现更好的安全效率,还能降低一些智能系统的计算、通信和存储成本。重要的是,为了提供不可追踪性和用户匿名性,RM-PoC从提议的SUSI获取动态身份。此外,通过对真或随机(RoR)模型的非正式和形式化分析,证明了提议的SUSI的安全效率。最后,广泛开展了使用NS3的模拟研究,以分析诸如传输延迟、吞吐率和数据包交付率等通信指标,这证明了提议的SUSI方案的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ab6f/7659916/f4c3d0a1c2f3/11042_2020_10134_Fig5_HTML.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ab6f/7659916/b2ccd706cec6/11042_2020_10134_Fig1_HTML.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ab6f/7659916/dcdff30606a2/11042_2020_10134_Fig2_HTML.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ab6f/7659916/9a67aef152c5/11042_2020_10134_Fig3_HTML.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ab6f/7659916/161ec72f4dbf/11042_2020_10134_Fig4_HTML.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ab6f/7659916/f4c3d0a1c2f3/11042_2020_10134_Fig5_HTML.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ab6f/7659916/b2ccd706cec6/11042_2020_10134_Fig1_HTML.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ab6f/7659916/dcdff30606a2/11042_2020_10134_Fig2_HTML.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ab6f/7659916/9a67aef152c5/11042_2020_10134_Fig3_HTML.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ab6f/7659916/161ec72f4dbf/11042_2020_10134_Fig4_HTML.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ab6f/7659916/f4c3d0a1c2f3/11042_2020_10134_Fig5_HTML.jpg

相似文献

[1]
Chaotic-map based authenticated security framework with privacy preservation for remote point-of-care.

Multimed Tools Appl. 2021

[2]
Privacy Protection for Point-of-Care Using Chaotic Maps-Based Authentication and Key Agreement.

J Med Syst. 2018-11-3

[3]
A Hash-Based RFID Authentication Mechanism for Context-Aware Management in IoT-Based Multimedia Systems.

Sensors (Basel). 2019-9-4

[4]
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Sensors (Basel). 2017-6-23

[5]
SLUA-WSN: Secure and Lightweight Three-Factor-Based User Authentication Protocol for Wireless Sensor Networks.

Sensors (Basel). 2020-7-25

[6]
Secure anonymity-preserving password-based user authentication and session key agreement scheme for telecare medicine information systems.

Comput Methods Programs Biomed. 2016-10

[7]
Privacy Protection for Telecare Medicine Information Systems Using a Chaotic Map-Based Three-Factor Authenticated Key Agreement Scheme.

IEEE J Biomed Health Inform. 2017-3

[8]
A Mutual Authentication Framework for Wireless Medical Sensor Networks.

J Med Syst. 2017-3-31

[9]
Three-Factor User Authentication and Key Agreement Using Elliptic Curve Cryptosystem in Wireless Sensor Networks.

Sensors (Basel). 2016-12-14

[10]
Secure anonymous mutual authentication for star two-tier wireless body area networks.

Comput Methods Programs Biomed. 2016-10

引用本文的文献

[1]
Legal implications for clinicians in cybersecurity incidents: A review.

Medicine (Baltimore). 2024-9-27

[2]
Blockchain and IPFS Integrated Framework in Bilevel Fog-Cloud Network for Security and Privacy of IoMT Devices.

Comput Math Methods Med. 2021

[3]
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