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A digital memories based user authentication scheme with privacy preservation.

JunLiang Liu1, Qiuyun Lyu1,2, Qiuhua Wang1

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Summary

This study introduces a secure Digital Memories authentication scheme using homomorphic encryption. It enhances security and privacy for Internet & IoT environments, overcoming limitations of traditional methods.

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Area of Science:

  • Computer Science
  • Cybersecurity
  • Cryptography

Background:

  • Traditional username/password/PIN authentication is insecure and vulnerable to various attacks.
  • Existing alternative methods often require complex recall or extra hardware, increasing user difficulty.
  • There is a need for more secure, user-friendly authentication methods in digital environments.

Purpose of the Study:

  • To propose a novel Digital Memories based user authentication scheme.
  • To enhance user privacy and security in Internet & IoT environments.
  • To offer a reliable and effective alternative to conventional authentication systems.

Main Methods:

  • Utilizing homomorphic encryption for secure data processing.
  • Implementing a public key encryption design for robust security.
  • Developing a Digital Memories based approach for user authentication.

Main Results:

  • The proposed scheme effectively protects user privacy and prevents tracking.
  • Demonstrated multi-level security suitable for Internet & IoT applications.
  • Proven superior reliability and security compared to existing authentication schemes.

Conclusions:

  • The Digital Memories based authentication scheme offers a secure and privacy-preserving solution.
  • The proposed method addresses the vulnerabilities of traditional authentication.
  • Promising performance and evaluation results indicate its effectiveness for modern digital environments.