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Open Access ·Peer-reviewed·ISSN (Online): 2169-012X·ISSN (Print): 0972-0502

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Open Access Research Article

Enhancing telecare medicine security through non-commutative algebra-based authentication

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pp. 1141–1149Vol. 27Issue 5August 2024DOI: 10.47974/JIM-1944XML
Received:
13 Mar 2024
Published Online:
30 Aug 2024
Article type:
Research Article
Language:
EN
Article no.:
JIM-1944
Pages:
1141–1149

Abstract

The advancement of data driven innovations and the inescapable reach of the Web have catalyzed the development of feasible registering. This movement has finished in the rise of the CoMT - NCABA (Cloud of Medical Things - Non-Commutative Algebra Based Authentication), a critical empowering agent for savvy medical services frameworks along with non-commutative algebra. As CoMT - NCABA based applications, like e-medical services, modern robotization, and military observation, gain noticeable quality, guaranteeing strong safety efforts becomes basic. Based on these non-commutative mathematical designs have surfaced as a primary support point for Single-User-Sign-In (S-USI), fundamentally adding to the security engineering of CoMT - NCABA driven Brilliant Conditions. While different verification plans have been proposed for cloud-based networks, intrinsic weaknesses like replay assaults, insider dangers, validation limits, and compromised client secrecy endure. Accordingly, this study presents a braced security structure for a medical care dependent on sensors and sensor-labels, utilizing the power of S-USI. A high-level S-USI instrument, braced by a carefully created conjunction convention for unavoidable cloud administrations, is introduced to reinforce the verification interaction. Through proper security examination, the adequacy of these strategies in bracing security and saving protection inside the telecare clinical area is highlighted.

Keywords

Subject Classifications

14A2294A62

References

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