A Mathematical Queuing Model Analysis Using Secure Data Authentication Framework for Modern Healthcare Applications

نویسندگان

چکیده

Healthcare application is one of the most promising developments to provide on-time demand services end users, vehicles, and other Road Side Units (RSUs) in urban environment. In recent years, several interfaces have been developed connect, communicate, share required from source another. However, environment holds a complex entity both homogenous heterogeneous devices which communication/sensing range between leads connectivity breakage, lack needed service time, environmental constraints. Also, security plays vital role allowing everyone area access/request according their needs. Again, this massive breakthrough providing reliable authentic users or catastrophic failure denial involving unauthorized user access. This paper proposes novel topological architecture, Secure Authentication Relay-based Urban Network (S-ARUN), designed for healthcare smart city applications registered transportation stakeholders. The stakeholders hold built-in data framework with three subsystems connected S-ARUN topology: (1) authentication subsystem: stakeholder must identify themselves responder as part subsystem before transmitting actual request; (2) periodically check connection state they travel along road pattern; (3) each will keep separate queue collecting requests, processing them quickly, sending results appropriate stakeholder. Kerberos method used working S-ARUN’s model connect securely legitimately. performance proposed assessed, metric toward key generation security-related metrics tested existing schemes.

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ژورنال

عنوان ژورنال: Journal of Sensors

سال: 2022

ISSN: ['1687-725X', '1687-7268']

DOI: https://doi.org/10.1155/2022/8397635