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Related Experiment Video

Updated: Jan 20, 2026

Investigating the Neural Mechanisms of Aware and Unaware Fear Memory with fMRI
12:51

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Published on: October 6, 2011

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A Hash-Based RFID Authentication Mechanism for Context-Aware Management in IoT-Based Multimedia Systems.

Deebak B D1, Fadi Al-Turjman2, Leonardo Mostarda3

  • 1Schoool of Computer Science and Engineering, Vellore Institute of Technology, Vellore-632014, India. deebak.bd@vit.ac.in.

Sensors (Basel, Switzerland)
|September 7, 2019
PubMed
Summary
This summary is machine-generated.

This study introduces a secure hash-based RFID mechanism for context-aware sensor management systems (CASMS). The proposed protocol enhances security and performance, offering a robust and cost-effective solution for device authentication.

Keywords:
RFIDcontext aware sensor management systemsde-synchronizationmultimedia device management systemsreplaytraceability

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Area of Science:

  • Computer Science
  • Information Security
  • Wireless Communication

Background:

  • Smart computing devices utilize multimedia sensors and radio-frequency identification (RFID) for data collection and communication.
  • Existing RFID authentication schemes face challenges like data forgery, high computation costs, tag anonymity, and untraceability in context-aware sensor management systems (CASMS).
  • Security objectives in CASMS include user authenticity, eavesdropping prevention, and tracing mitigation.

Purpose of the Study:

  • To propose a secure hash-based RFID mechanism tailored for context-aware sensor management systems (CASMS).
  • To address limitations in existing authentication schemes, specifically concerning security vulnerabilities and computational overhead.
  • To enhance tag anonymity, mutual authentication, and untraceability within CASMS.

Main Methods:

  • Development of a novel hash-based RFID protocol utilizing a synchronized secret session-key.
  • Implementation of the protocol to withstand common attacks such as desynchronization, replay, and man-in-the-middle attacks.
  • Security and performance analysis, including simulations to evaluate communication metrics.

Main Results:

  • The proposed hash-based RFID protocol demonstrates superior security and performance efficiencies compared to existing related schemes.
  • Simulation results confirm the scheme's robustness, security, and cost-effectiveness.
  • Improved communication metrics, including packet delivery ratio, end-to-end delay, and throughput rate, were observed.

Conclusions:

  • The proposed secure hash-based RFID mechanism is a viable and efficient solution for authentication in CASMS.
  • The protocol effectively mitigates security risks and enhances system performance.
  • This approach offers a more secure, robust, and economical alternative for multimedia device management.