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  • 1School of Mathematics and Computer Science, Yunnan Minzu University, Kunming 650504, China.

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This study introduces a new framework for secure Internet of Things (IoT) authentication. It uses dynamic authenticated credentials (DACs) to improve security and reduce computational load in resource-constrained environments.

Keywords:
anonymityauthentication and key agreementdynamic authenticated credentialsephemeral information leakage attacksinternet of things

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Area of Science:

  • Computer Science
  • Cybersecurity
  • Network Security

Background:

  • Securing data in Internet of Things (IoT) systems is crucial due to open communication channels and sensitive data.
  • Resource-constrained IoT environments pose challenges for traditional Elliptic Curve Cryptography (ECC)-based Authentication and Key Agreement (AKA) protocols.
  • Existing anonymous authentication methods increase computational overhead and lack resistance to ephemeral secret leakage (ESL) and perfect forward security.

Purpose of the Study:

  • To propose a novel dynamic authenticated credentials (DACs) synchronization framework for anonymous authentication in IoT.
  • To develop an ECC-based AKA scheme utilizing DACs to enhance efficiency and security.
  • To address limitations of existing protocols, including computational burden and vulnerability to ESL attacks.

Main Methods:

  • Developed a dynamic authenticated credentials (DACs) synchronization framework.
  • Designed an ECC-based AKA scheme employing DACs as a replacement for temporary public keys or sender credentials.
  • Verified protocol security using the Real-or-Oracle model and ProVerif for validation.

Main Results:

  • The proposed ECC-based AKA scheme with DACs enables efficient and secure anonymous authentication.
  • Achieved significant improvements in security compared to existing solutions.
  • Demonstrated over 37% reduction in communication cost and computational overhead.

Conclusions:

  • The DACs synchronization framework offers a viable solution for secure and efficient anonymous authentication in IoT.
  • The proposed ECC-based AKA scheme effectively mitigates security risks and reduces resource consumption.
  • This approach enhances the overall security posture of IoT systems while maintaining performance.