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Seven-Layer Adaptive Cybersecurity Framework for Mobile Devices Using Multi-Modal Authentication and Dynamic Protective Isolation
Subject area: Science,Engineering and Technology · Area of research: Mobile Cybersecurity Frameworks
Abstract
With the increasing reliance on mobile devices for sensitive data storage and digital identity management, traditional single-layer security mechanisms are no longer sufficient to counter sophisticated cyber threats. This paper proposes a Seven-Layer Adaptive Cybersecurity Framework, integrating multi-modal biometric authentication, dynamic encryption, behavioral analysis, and risk-based access control. The framework introduces a novel UASC (User–Authentication–Secure–Context) encryption model combined with a time substitution mechanism to generate dynamic cryptographic keys. Additionally, a Protective Isolation Mode is proposed to safeguard data under suspicious access conditions. The system adaptively adjusts security layers based on user trust levels, ensuring both usability and robust protection. The proposed architecture is suitable for next-generation secure mobile devices.
Keywords
Cybersecurity, Multi-layer Security, Biometrics, Adaptive Authentication, Encryption, Mobile Security, Behavioral Authentication
How to cite this paper
@article{1717421,
author = {S Ravichandran Ayyer},
title = { Seven-Layer Adaptive Cybersecurity Framework for Mobile Devices Using Multi-Modal Authentication and Dynamic Protective Isolation},
journal = {Iconic Research And Engineering Journals},
year = {2026},
volume = {9},
number = {11},
pages = {1302-1304},
issn = {2456-8880},
url = {https://www.irejournals.com/formatedpaper/1717421.pdf},
abstract = {With the increasing reliance on mobile devices for sensitive data storage and digital identity management, traditional single-layer security mechanisms are no longer sufficient to counter sophisticated cyber threats. This paper proposes a Seven-Layer Adaptive Cybersecurity Framework, integrating multi-modal biometric authentication, dynamic encryption, behavioral analysis, and risk-based access control. The framework introduces a novel UASC (User–Authentication–Secure–Context) encryption model combined with a time substitution mechanism to generate dynamic cryptographic keys. Additionally, a Protective Isolation Mode is proposed to safeguard data under suspicious access conditions. The system adaptively adjusts security layers based on user trust levels, ensuring both usability and robust protection. The proposed architecture is suitable for next-generation secure mobile devices.},
keywords = {Cybersecurity, Multi-layer Security, Biometrics, Adaptive Authentication, Encryption, Mobile Security, Behavioral Authentication},
month = {May},
}